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References

1 - Reviews

[1-1]
IceCube and High-Energy Cosmic Neutrinos, Francis Halzen, Ali Kheirandish, arXiv:2202.00694, 2022.
[Halzen:2022pez]
[1-2]
Neutrino astronomy with the next generation IceCube Neutrino Observatory, M. G. Aartsen et al., arXiv:1911.02561, 2019.
[IceCube:2019pna]
[1-3]
Opening a New Window onto the Universe with IceCube, Markus Ahlers, Francis Halzen, Prog.Part.Nucl.Phys. 102 (2018) 73-88, arXiv:1805.11112.
[Ahlers:2018fkn]
[1-4]
Neutrinos and Cosmic Rays Observed by IceCube, M. G. Aartsen et al. (IceCube), arXiv:1701.03731, 2017.
[Aartsen:2017von]
[1-5]
IceCube: Neutrino Physics from GeV - PeV, Francis Halzen (IceCube), arXiv:1308.3171, 2013.
[Halzen:2013uzb]
[1-6]
IceCube: An Instrument for Neutrino Astronomy, Francis Halzen, Spencer R. Klein, Rev. Sci. Instrum. 81 (2010) 081101, arXiv:1007.1247.
[Halzen:2010yj]
[1-7]
The Indirect Search for Dark Matter with IceCube, Francis Halzen, Dan Hooper, New J. Phys. 11 (2009) 105019, arXiv:0910.4513.
[Halzen:2009vu]
[1-8]
Neutrino Astronomy with IceCube, Tyce DeYoung, Mod. Phys. Lett. A24 (2009) 1543-1557, arXiv:0906.4530.
[DeYoung:2009er]
[1-9]
Astroparticle physics with high energy neutrinos: from amanda to icecube, Francis Halzen, Eur.Phys.J. C46 (2006) 669-687, arXiv:astro-ph/0602132.
[Halzen:2006mq]
[1-10]
IceHEP High Energy Physics at the South Pole, Luis Anchordoqui, Francis Halzen, Annals Phys. 321 (2006) 2660-2716, arXiv:hep-ph/0510389.
[Anchordoqui:2005is]

2 - Habilitation, PhD and Master Theses

[2-1]
Sterile Neutrino Searches at the IceCube Neutrino Observatory, Spencer Axani, arXiv:2003.02796, 2020.
[Axani:2019sbk]
[2-2]
Calibration of the IceCube Neutrino Observatory, Martin Rongen, arXiv:1911.02016, 2019.
[Rongen:2019wsh]
[2-3]
The Effect of Hole Ice on the Propagation and Detection of Light in IceCube, Sebastian Fiedlschuster, arXiv:1904.08422, 2019.
[Fiedlschuster:2019unl]
[2-4]
New physics with atmospheric Neutrinos, C. A. Arguelles, 2015. PhD thesis, ISBN 978-1-339-06088-0. https://docushare.icecube.wisc.edu/dsweb/Get/Document-75669/tesis.pdf.
[Arguelles:2015a]
[2-5]
Sterile Neutrinos in Cold Climates, Benjamin J. P. Jones, 2015. PhD thesis, FERMILAB-THESIS-2015-17. http://lss.fnal.gov/archive/thesis/2000/fermilab-thesis-2015-17.pdf.
[Jones:2015bya]

3 - Astrophysical Neutrinos

[3-1]
Observation of Seven Astrophysical Tau Neutrino Candidates with IceCube, R. Abbasi et al. (IceCube), Phys.Rev.Lett. 132 (2024) 151001, arXiv:2403.02516.
[IceCubeCollaborationSS:2024fmq]
[3-2]
Characterization of the Astrophysical Diffuse Neutrino Flux using Starting Track Events in IceCube, R. Abbasi et al., arXiv:2402.18026, 2024.
[Abbasi:2024jro]
[3-3]
Search for 10-1,000 GeV neutrinos from Gamma Ray Bursts with IceCube, R. Abbasi et al. (IceCube), Astrophys.J. 964 (2024) 126, arXiv:2312.11515.
[IceCube:2023woj]
[3-4]
All-Sky Search for Transient Astrophysical Neutrino Emission with 10 Years of IceCube Cascade Events, R. Abbasi et al., arXiv:2312.05362, 2023.
[IceCube:2023myz]
[3-5]
Search for Continuous and Transient Neutrino Emission Associated with IceCube's Highest-Energy Tracks: An 11-Year Analysis, R. Abbasi et al., Astrophys.J. 964 (2024) 40, arXiv:2309.12130.
[IceCube:2023oqe]
[3-6]
Search for Galactic core-collapse supernovae in a decade of data taken with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Astrophys.J. 961 (2024) 84, arXiv:2308.01172.
[IceCube:2023ogt]
[3-7]
Search for Extended Sources of Neutrino Emission in the Galactic Plane with IceCube, R. Abbasi et al., Astrophys.J. 956 (2023) 20, arXiv:2307.07576.
[IceCube:2023ujd]
[3-8]
Observation of high-energy neutrinos from the Galactic plane, R. Abbasi et al., Science 380 (2023) 1338-1343, arXiv:2307.04427.
[IceCube:2023ame]
[3-9]
Search for correlations of high-energy neutrinos detected in IceCube with radio-bright AGN and gamma-ray emission from blazars, R. Abbasi et al., Astrophys.J. 954 (2023) 75, arXiv:2304.12675.
[IceCube:2023htm]
[3-10]
IceCat-1: the IceCube Event Catalog of Alert Tracks, R. Abbasi et al., Astrophys.J.Suppl. 269 (2023) 25, arXiv:2304.01174.
[IceCube:2023agq]
[3-11]
A Search for IceCube sub-TeV Neutrinos Correlated with Gravitational-Wave Events Detected By LIGO/Virgo, R. Abbasi et al., Astrophys.J. 959 (2023) 96, arXiv:2303.15970.
[IceCube:2023atb]
[3-12]
Constraining High-Energy Neutrino Emission from Supernovae with IceCube, R. Abbasi et al., Astrophys.J.Lett. 949 (2023) L12, arXiv:2303.03316.
[IceCube:2023esf]
[3-13]
Limits on Neutrino Emission from GRB 221009A from MeV to PeV using the IceCube Neutrino Observatory, R. Abbasi et al., Astrophys.J.Lett. 946 (2023) L26, arXiv:2302.05459.
[IceCube:2023rhf]
[3-14]
Search for sub-TeV Neutrino Emission from Novae with IceCube-DeepCore, R. Abbasi et al., Astrophys.J. 953 (2023) 160, arXiv:2212.06810.
[IceCube:2022lnv]
[3-15]
A Search for Coincident Neutrino Emission from Fast Radio Bursts with Seven Years of IceCube Cascade Events, R. Abbasi et al., Astrophys.J. 946 (2023) 80, arXiv:2212.06702.
[IceCube:2022mjy]
[3-16]
Searches for Neutrinos from LHAASO ultra-high-energy $\gamma$-ray sources using the IceCube Neutrino Observatory, R. Abbasi et al., Astrophys.J.Lett. 945 (2023) L8, arXiv:2211.14184.
[IceCube:2022heu]
[3-17]
Constraints on populations of neutrino sources from searches in the directions of IceCube neutrino alerts, R. Abbasi et al. (IceCube), Astrophys.J. 951 (2023) 45, arXiv:2210.04930.
[IceCube:2022ham]
[3-18]
IceCube search for neutrinos coincident with gravitational wave events from LIGO/Virgo run O3, Aswathi Balagopal V., Raamis Hussain, Zsuzsa Marka, Justin Vandenbroucke, Doga Veske (IceCube), Astrophys.J. 944 (2023) 80, arXiv:2208.09532.
[IceCube:2022mma]
[3-19]
Search for Astrophysical Neutrinos from 1FLE Blazars with IceCube, R. Abbasi et al., Astrophys.J. 938 (2022) 38, arXiv:2207.04946.
[IceCube:2022zbd]
[3-20]
Searching for High-Energy Neutrino Emission from Galaxy Clusters with IceCube, R. Abbasi et al. (IceCube), Astrophys.J.Lett. 938 (2022) L11, arXiv:2206.02054.
[IceCube:2022ccm]
[3-21]
Searches for Connections between Dark Matter and High-Energy Neutrinos with IceCube, R. Abbasi et al. (IceCube), arXiv:2205.12950, 2022.
[IceCube:2022vtr]
[3-22]
Searches for Neutrinos from Gamma-Ray Bursts using the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Astrophys.J. 939 (2022) 116, arXiv:2205.11410.
[IceCube:2022rlk]
[3-23]
Search for High-Energy Neutrino Emission from Galactic X-ray Binaries with IceCube, R. Abbasi et al. (IceCube), Astrophys.J.Lett. 930 (2022) L24, arXiv:2202.11722.
[IceCube:2022jpz]
[3-24]
Improved Characterization of the Astrophysical Muon-Neutrino Flux with 9.5 Years of IceCube Data, R. Abbasi et al. (IceCube), Astrophys.J. 928 (2022) 50, arXiv:2111.10299.
[IceCube:2021uhz]
[3-25]
A search for neutrino emission from cores of Active Galactic Nuclei, R. Abbasi et al. (IceCube), Phys.Rev.D 106 (2022) 022005, arXiv:2111.10169.
[IceCube:2021pgw]
[3-26]
Detection of a particle shower at the Glashow resonance with IceCube, M.G. Aartsen et al. (IceCube), arXiv:2110.15051, 2021.
[2110.15051]
[3-27]
Search for multi-flare neutrino emissions in 10 years of IceCube data from a catalog of sources, R. Abbasi et al. (IceCube), Astrophys.J.Lett. 920 (2021) L45, arXiv:2109.05818.
[IceCube:2021slf]
[3-28]
Search for High-Energy Neutrinos from Ultra-Luminous Infrared Galaxies with IceCube, R. Abbasi et al. (IceCube), Astrophys.J. 926 (2022) 59, arXiv:2107.03149.
[IceCube:2021waz]
[3-29]
Probing neutrino emission at GeV energies from compact binary mergers with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), arXiv:2105.13160, 2021.
[IceCube:2021ddq]
[3-30]
IceCube Data for Neutrino Point-Source Searches Years 2008-2018, R. Abbasi et al. (IceCube), arXiv:2101.09836, 2021.
[IceCube:2021xar]
[3-31]
Follow-up of astrophysical transients in real time with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Astrophys.J. 910 (2021) 4, arXiv:2012.04577.
[IceCube:2020mzw]
[3-32]
A search for time-dependent astrophysical neutrino emission with IceCube data from 2012 to 2017, R. Abbasi et al. (IceCube), Astrophys.J. 911 (2021) 67, arXiv:2012.01079.
[IceCube:2020nig]
[3-33]
Search for sub-TeV neutrino emission from transient sources with three years of IceCube data, R. Abbasi et al. (IceCube), JCAP 01 (2022) 027, arXiv:2011.05096.
[IceCube:2020qls]
[3-34]
Measurement of Astrophysical Tau Neutrinos in IceCube's High-Energy Starting Events, R. Abbasi et al. (IceCube), arXiv:2011.03561, 2020.
[IceCube:2020abv]
[3-35]
Measurement of the high-energy all-flavor neutrino-nucleon cross section with IceCube, R. Abbasi et al. (IceCube), arXiv:2011.03560, 2020.
[IceCube:2020rnc]
[3-36]
The IceCube high-energy starting event sample: Description and flux characterization with 7.5 years of data, R. Abbasi et al. (IceCube), Phys.Rev.D 104 (2021) 022002, arXiv:2011.03545.
[IceCube:2020wum]
[3-37]
Multimessenger Gamma-Ray and Neutrino Coincidence Alerts using HAWC and IceCube sub-threshold Data, H.A. Ayala Solares et al. (AMON Team, HAWC, IceCube), Astrophys.J. 906 (2021) 63, arXiv:2008.10616.
[AMONTeam:2020otr]
[3-38]
IceCube Search for Neutrinos Coincident with Compact Binary Mergers from LIGO-Virgo's First Gravitational-Wave Transient Catalog, M.G. Aartsen et al. (IceCube), Astrophys.J. 898 (2020) L10, arXiv:2004.02910.
[IceCube:2020xks]
[3-39]
IceCube Search for High-Energy Neutrino Emission from TeV Pulsar Wind Nebulae, M. G. Aartsen et al. (IceCube), Astrophys.J. 898 (2020) 117, arXiv:2003.12071.
[IceCube:2020svz]
[3-40]
Characteristics of the diffuse astrophysical electron and tau neutrino flux with six years of IceCube high energy cascade data, M. G. Aartsen et al. (IceCube), Phys.Rev.Lett. 125 (2020) 121104, arXiv:2001.09520.
[IceCube:2020acn]
[3-41]
ANTARES and IceCube Combined Search for Neutrino Point-like and Extended Sources in the Southern Sky, M. G. Aartsen et al. (ANTARES,IceCube), Astrophys.J. 892 (2020) 92, arXiv:2001.04412.
[ANTARES:2020srt]
[3-42]
A search for IceCube events in the direction of ANITA neutrino candidates, M. G. Aartsen et al. (IceCube), arXiv:2001.01737, 2020.
[IceCube:2020gbx]
[3-43]
Searches for neutrinos from cosmic-ray interactions in the Sun using seven years of IceCube data, M. G. Aartsen et al. (IceCube), arXiv:1912.13135, 2019.
[IceCube:2019ubb]
[3-44]
Constraints on Neutrino Emission from Nearby Galaxies Using the 2MASS Redshift Survey and IceCube, M. G. Aartsen et al. (IceCube), JCAP 2007 (2020) 042, arXiv:1911.11809.
[IceCube:2019yml]
[3-45]
Time-integrated Neutrino Source Searches with 10 years of IceCube Data, M. G. Aartsen et al. (IceCube), Phys.Rev.Lett. 124 (2020) 051103, arXiv:1910.08488.
[IceCube:2019cia]
[3-46]
A Search for Neutrino Point-Source Populations in 7 Years of IceCube Data with Neutrino-count Statistics, M. G. Aartsen et al. (IceCube), Astrophys.J. 893 (2020) 102, arXiv:1909.08623.
[IceCube:2019xiu]
[3-47]
A Search for MeV to TeV Neutrinos from Fast Radio Bursts with IceCube, M. G. Aartsen et al. (IceCube), Astrophys.J. 857 (2018) 117, arXiv:1908.09997.
[IceCube:2019acm]
[3-48]
Search for Sources of Astrophysical Neutrinos Using Seven Years of IceCube Cascade Events, M. G. Aartsen et al. (IceCube), Astrophys.J. 886 (2019) 12, arXiv:1907.06714.
[IceCube:2019lzm]
[3-49]
Neutrinos below 100 TeV from the southern sky employing refined veto techniques to IceCube data, M. G. Aartsen et al. (IceCube), Astropart.Phys. 116 (2020) 102392, arXiv:1902.05792.
[IceCube:2019ndt]
[3-50]
Search for steady point-like sources in the astrophysical muon neutrino flux with 8 years of IceCube data, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C79 (2019) 234, arXiv:1811.07979.
[IceCube:2018ndw]
[3-51]
Search for Multi-messenger Sources of Gravitational Waves and High-energy Neutrinos with Advanced LIGO during its first Observing Run, ANTARES and IceCube, A. Albert et al. (Virgo, IceCube, LIGO, ANTARES), Astrophys.J. 870 (2019) 134, arXiv:1810.10693.
[ANTARES:2018bmu]
[3-52]
Measurements using the inelasticity distribution of multi-TeV neutrino interactions in IceCube, M. G. Aartsen et al. (IceCube), Phys.Rev. D99 (2019) 032004, arXiv:1808.07629.
[IceCube:2018pgc]
[3-53]
Joint constraints on Galactic diffuse neutrino emission from ANTARES and IceCube, A. Albert et al. (IceCube, ANTARES), Astrophys.J. 868 (2018) L20, arXiv:1808.03531.
[ANTARES:2018nyb]
[3-54]
Constraints on minute-scale transient astrophysical neutrino sources, M. G. Aartsen et al. (IceCube), Phys.Rev.Lett. 122 (2019) 051102, arXiv:1807.11492.
[IceCube:2018omy]
[3-55]
Multimessenger observations of a flaring blazar coincident with high-energy neutrino IceCube-170922A, Liverpool Telescope, MAGIC, H.E.S.S., AGILE, Kiso, VLA/17B-403, INTEGRAL, Kapteyn, Subaru, HAWC, Fermi-LAT, ASAS-SN, VERITAS, Kanata, IceCube, Swift NuSTAR, Science 361 (2018) eaat1378, arXiv:1807.08816.
[IceCube:2018dnn]
[3-56]
Neutrino emission from the direction of the blazar TXS 0506+056 prior to the IceCube-170922A alert, M. G. Aartsen et al. (IceCube), Science 361 (2018) 147-151, arXiv:1807.08794.
[IceCube:2018cha]
[3-57]
Dissecting the region around IceCube-170922A: the blazar TXS 0506+056 as the first cosmic neutrino source, P. Padovani et al., Mon.Not.Roy.Astron.Soc. 480 (2018) 192, arXiv:1807.04461.
[Padovani:2018acg]
[3-58]
Differential limit on the extremely-high-energy cosmic neutrino flux in the presence of astrophysical background from nine years of IceCube data, M. G. Aartsen et al. (IceCube), Phys.Rev. D98 (2018) 062003, arXiv:1807.01820.
[IceCube:2018fhm]
[3-59]
A Search for Neutrino Emission from Fast Radio Bursts with Six Years of IceCube Data, M. G. Aartsen et al. (IceCube), Astrophys.J. 857 (2018) 117, arXiv:1712.06277.
[IceCube:2017fpg]
[3-60]
Multi-messenger Observations of a Binary Neutron Star Merger, GROND, SALT Group, OzGrav, DFN, INTEGRAL, Virgo, Insight-Hxmt, MAXI Team, Fermi-LAT, J-GEM, RATIR, ATLAS, IceCube, CAASTRO, LWA, ePESSTO, GRAWITA, RIMAS, SKA South Africa/MeerKAT, H.E.S.S., 1M2H Team, IKI-GW Follow-up, Fermi GBM, Pi of Sky, DWF (Deeper Wider Faster Program), Dark Energy Survey, MASTER, AstroSat Cadmium Zinc Telluride Imager Team, Swift, Pierre Auger, ASKAP, VINROUGE, JAGWAR, Chandra Team at McGill University, TTU-NRAO, GROWTH, AGILE Team, MWA, ATCA, AST3, TOROS, Pan-STARRS, NuSTAR, BOOTES, CaltechNRAO, LIGO Scientific, High Time Resolution Universe Survey, Nordic Optical Telescope, Las Cumbres Observatory Group, TZAC Consortium, LOFAR, IPN, DLT40, Texas Tech University, HAWC, ANTARES, KU, Dark Energy Camera GW-EM, CALET, Euro VLBI Team, ALMA, Astrophys. J. 848 (2017) L12, arXiv:1710.05833.
[LIGOScientific:2017ync]
[3-61]
Constraints on Galactic Neutrino Emission with Seven Years of IceCube Data, M. G. Aartsen et al. (IceCube), Astrophys.J. 849 (2017) 67, arXiv:1707.03416.
[IceCube:2017trr]
[3-62]
Search for Neutrinos from Dark Matter Self-Annihilations in the center of the Milky Way with 3 years of IceCube/DeepCore, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C77 (2017) 627, arXiv:1705.08103.
[IceCube:2017rdn]
[3-63]
Search for astrophysical sources of neutrinos using cascade events in IceCube, M. G. Aartsen et al. (IceCube), Astrophys.J. 846 (2017) 136, arXiv:1705.02383.
[IceCube:2017der]
[3-64]
Search for High-energy Neutrinos from Gravitational Wave Event GW151226 and Candidate LVT151012 with ANTARES and IceCube, ANTARES, IceCube, LIGO, Virgo, Phys.Rev. D96 (2017) 022005, arXiv:1703.06298.
[ANTARES:2017iky]
[3-65]
Extending the search for muon neutrinos coincident with gamma-ray bursts in IceCube data, M. G. Aartsen et al. (IceCube), Astrophys.J. 843 (2017) 112, arXiv:1702.06868.
[IceCube:2017amx]
[3-66]
Multiwavelength follow-up of a rare IceCube neutrino multiplet, M. G. Aartsen et al. (IceCube), Astron.Astrophys. 607 (2017) A115, arXiv:1702.06131.
[Aartsen:2017snx]
[3-67]
The contribution of Fermi-2LAC blazars to the diffuse TeV-PeV neutrino flux, M. G. Aartsen et al. (IceCube), Astrophys.J. 835 (2017) 45, arXiv:1611.03874.
[IceCube:2016qvd]
[3-68]
All-sky search for time-integrated neutrino emission from astrophysical sources with 7 years of IceCube data, M. G. Aartsen et al. (IceCube), Astrophys.J. 835 (2017) 151, arXiv:1609.04981.
[IceCube:2016tpw]
[3-69]
Observation and Characterization of a Cosmic Muon Neutrino Flux from the Northern Hemisphere using six years of IceCube data, M. G. Aartsen et al. (IceCube), Astrophys.J. 833 (2016) 3, arXiv:1607.08006.
[IceCube:2016umi]
[3-70]
Constraints on ultra-high-energy cosmic ray sources from a search for neutrinos above 10 PeV with IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 117 (2016) 241101, arXiv:1607.05886.
[IceCube:2016uab]
[3-71]
Lowering IceCube's Energy Threshold for Point Source Searches in the Southern Sky, M. G. Aartsen et al. (IceCube), Astrophys.J. 824 (2016) L28, arXiv:1605.00163.
[IceCube:2016quu]
[3-72]
High-energy Neutrino follow-up search of Gravitational Wave Event GW150914 with ANTARES and IceCube, S. Adrian-Martinez et al. (Virgo, IceCube, ANTARES, LIGO), Phys. Rev. D93 (2016) 122010, arXiv:1602.05411.
[ANTARES:2016qdk]
[3-73]
An All-Sky Search for Three Flavors of Neutrinos from Gamma-Ray Bursts with the IceCube Neutrino Observatory, M. G. Aartsen et al. (IceCube), Astrophys.J. 824 (2016) 115, arXiv:1601.06484.
[IceCube:2016ipa]
[3-74]
Search for correlations between the arrival directions of IceCube neutrino events and ultrahigh-energy cosmic rays detected by the Pierre Auger Observatory and the Telescope Array, M. G. Aartsen et al. (IceCube), JCAP 1601 (2016) 037, arXiv:1511.09408.
[IceCube:2015afa]
[3-75]
First combined search for neutrino point-sources in the Southern Hemisphere with the ANTARES and IceCube neutrino telescopes, S. Adrian-Martinez et al. (ANTARES,IceCube), Astrophys.J. 823 (2016) 65, arXiv:1511.02149.
[ANTARES:2015moa]
[3-76]
Search for Astrophysical Tau Neutrinos in Three Years of IceCube Data, M. G. Aartsen et al. (IceCube), Phys. Rev. D93 (2016) 022001, arXiv:1509.06212.
[IceCube:2015vkp]
[3-77]
Search for Transient Astrophysical Neutrino Emission with IceCube-DeepCore, M. G. Aartsen et al. (IceCube), Astrophys. J. 816 (2016) 75, arXiv:1509.05029.
[IceCube:2015wtd]
[3-78]
Evidence for Astrophysical Muon Neutrinos from the Northern Sky with IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 115 (2015) 081102, arXiv:1507.04005.
[IceCube:2015qii]
[3-79]
A combined maximum-likelihood analysis of the high-energy astrophysical neutrino flux measured with IceCube, M. G. Aartsen et al. (IceCube), Astrophys. J. 809 (2015) 98, arXiv:1507.03991.
[Aartsen:2015ita]
[3-80]
Detection of a Type IIn Supernova in Optical Follow-up Observations of IceCube Neutrino Events, M. G. Aartsen et al. (IceCube), Astrophys. J. 811 (2015) 52, arXiv:1506.03115.
[IceCube:2015jsn]
[3-81]
Searches for Time Dependent Neutrino Sources with IceCube Data from 2008 to 2012, M. G. Aartsen et al. (IceCube), Astrophys.J. 796 (2015) 109, arXiv:1503.00598.
[IceCube:2015usw]
[3-82]
Flavor Ratio of Astrophysical Neutrinos above 35 TeV in IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 114 (2015) 171102, arXiv:1502.03376.
[IceCube:2015rro]
[3-83]
Search for Prompt Neutrino Emission from Gamma-Ray Bursts with IceCube, M. G. Aartsen et al. (IceCube), Astrophys.J. 805 (2015) L5, arXiv:1412.6510.
[IceCube:2014jkq]
[3-84]
Atmospheric and Astrophysical Neutrinos above 1 TeV Interacting in IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. D91 (2015) 022001, arXiv:1410.1749.
[IceCube:2014rwe]
[3-85]
Searches for small-scale anisotropies from neutrino point sources with three years of IceCube data, M. G. Aartsen et al. (IceCube), Astropart.Phys. 66 (2015) 39-52, arXiv:1408.0634.
[IceCube:2014gax]
[3-86]
Multimessenger Search for Sources of Gravitational Waves and High-Energy Neutrinos: Results for Initial LIGO-Virgo and IceCube, M. G. Aartsen et al. (IceCube-LIGO-Virgo), Phys. Rev. D90 (2014) 102002, arXiv:1407.1042.
[IceCube:2014yxu]
[3-87]
Searches for Extended and Point-like Neutrino Sources with Four Years of IceCube Data, M. G. Aartsen et al. (IceCube), Astrophys. J. 796 (2014) 109, arXiv:1406.6757.
[IceCube:2014vjc]
[3-88]
Observation of High-Energy Astrophysical Neutrinos in Three Years of IceCube Data, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 113 (2014) 101101, arXiv:1405.5303.
[IceCube:2014stg]
[3-89]
Search for neutrino-induced particle showers with IceCube-40, M. G. Aartsen et al. (IceCube), Phys. Rev. D89 (2014) 102001, arXiv:1312.0104.
[IceCube:2013jiu]
[3-90]
Search for a diffuse flux of astrophysical muon neutrinos with the IceCube 59-string configuration, M. G. Aartsen et al. (IceCube), Phys. Rev. D89 (2014) 062007, arXiv:1311.7048.
[IceCube:2013gge]
[3-91]
Evidence for High-Energy Extraterrestrial Neutrinos at the IceCube Detector, M. G. Aartsen et al. (IceCube), Science 342, 1242856 (2013) 1242856, arXiv:1311.5238.
[IceCube:2013low]
[3-92]
Probing the origin of cosmic-rays with extremely high energy neutrinos using the IceCube Observatory, M. G. Aartsen et al. (IceCube), Phys. Rev. D88 (2013) 112008, arXiv:1310.5477.
[IceCube:2013ccs]
[3-93]
Search for time-independent neutrino emission from astrophysical sources with 3 years of IceCube data, M. G. Aartsen et al. (IceCube), Astrophys.J. 779 (2013) 132, arXiv:1307.6669.
[IceCube:2013kvf]
[3-94]
First observation of PeV-energy neutrinos with IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 111 (2013) 021103, arXiv:1304.5356.
[IceCube:2013cdw]
[3-95]
Searches for high-energy neutrino emission in the Galaxy with the combined IceCube-AMANDA detector, R. Abbasi et al. (IceCube), Astrophys. J. 763 (2013) 33, arXiv:1210.3273.
[IceCube:2012sj]
[3-96]
An Absence of Neutrinos Associated with Cosmic Ray Acceleration in Gamma-Ray Bursts, R. Abbasi et al. (IceCube), Nature 484 (2013) 351-353, arXiv:1204.4219.
[ANTARES:2013ath]
[3-97]
A Search for UHE Tau Neutrinos with IceCube, R. Abbasi et al. (IceCube), Phys. Rev. D86 (2012) 022005, arXiv:1202.4564.
[IceCube:2012lak]
[3-98]
Searches for periodic neutrino emission from binary systems with 22 and 40 strings of IceCube, R. Abbasi et al. (IceCube), Astrophys. J. 748 (2012) 118, arXiv:1108.3023.
[IceCube:2011nvh]
[3-99]
IceCube Sensitivity for Low-Energy Neutrinos from Nearby Supernovae, R. Abbasi et al. (IceCube), Astron. Astrophys. 535 (2011) A109, arXiv:1108.0171.
[IceCube:2011cwc]
[3-100]
Neutrino analysis of the September 2010 Crab Nebula flare and time-integrated constraints on neutrino emission from the Crab using IceCube, J. A. Aguilar, T. Montaruli, M. Danninger (IceCube), Astrophys. J. 745 (2012) 45, arXiv:1106.3484.
[IceCube:2011aa]
[3-101]
A Search for a Diffuse Flux of Astrophysical Muon Neutrinos with the IceCube 40-String Detector, R. Abbasi et al. (IceCube), Phys. Rev. D84 (2011) 082001, arXiv:1104.5187.
[IceCube:2011nyf]
[3-102]
Time-Dependent Searches for Point Sources of Neutrinos with the 40-String and 22-String Configurations of IceCube, R. Abbasi (IceCube), Astrophys. J. 744 (2012) 1, arXiv:1104.0075.
[IceCube:2011ai]
[3-103]
Constraints on the Extremely-high Energy Cosmic Neutrino Flux with the IceCube 2008-2009 Data, R. Abbasi et al. (IceCube), Phys. Rev. D83 (2011) 092003, arXiv:1103.4250.
[IceCube:2011njr]
[3-104]
Constraints on high-energy neutrino emission from SN 2008D, R. Abbasi et al. (IceCube), Astron. Astrophys. 527 (2011) A28, arXiv:1101.3942.
[IceCube:2011koo]
[3-105]
First search for atmospheric and extraterrestrial neutrino-induced cascades with the IceCube detector, R. Abbasi et al. (IceCube), Phys. Rev. D84 (2011) 072001, arXiv:1101.1692.
[IceCube:2011mzm]
[3-106]
Time-Integrated Searches for Point-like Sources of Neutrinos with the 40-String IceCube Detector, R. Abbasi et al. (IceCube), Astrophys. J. 732 (2011) 18, arXiv:1012.2137.
[IceCube:2010nca]
[3-107]
The first search for extremely-high energy cosmogenic neutrinos with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Phys. Rev. D82 (2010) 072003, arXiv:1009.1442.
[IceCube:2010hwb]
[3-108]
Search for muon neutrinos from Gamma-Ray Bursts with the IceCube neutrino telescope, R. U. Abbasi et al. (IceCube), Astrophys. J. 710 (2010) 346-359, arXiv:0907.2227.
[IceCube:2009ror]
[3-109]
Search for high-energy muon neutrinos from the "naked-eye" GRB 080319B with the IceCube neutrino telescope, R. Abbasi et al. (IceCube), Astrophys. J. 701 (2009) 1721-1731, arXiv:0902.0131.
[IceCube:2009xmx]

4 - Sterile Neutrinos

[4-1]
First Search for Unstable Sterile Neutrinos with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Phys.Rev.Lett. 129 (2022) 151801, arXiv:2204.00612.
[IceCubeCollaboration:2022tso]
[4-2]
Searching for eV-scale sterile neutrinos with eight years of atmospheric neutrinos at the IceCube neutrino telescope, M. G. Aartsen et al. (IceCube), Phys.Rev. D102 (2020) 052009, arXiv:2005.12943.
[IceCube:2020tka]
[4-3]
An eV-scale sterile neutrino search using eight years of atmospheric muon neutrino data from the IceCube Neutrino Observatory, M. G. Aartsen et al. (IceCube), Phys.Rev.Lett. 125 (2020) 141801, arXiv:2005.12942.
[IceCube:2020phf]
[4-4]
Search for sterile neutrino mixing using three years of IceCube DeepCore data, M. G. Aartsen et al. (IceCube), Phys.Rev. D95 (2017) 112002, arXiv:1702.05160.
[IceCube:2017ivd]
[4-5]
Searches for Sterile Neutrinos with the IceCube Detector, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 117 (2016) 071801, arXiv:1605.01990.
[IceCube:2016rnb]

5 - Solar Neutrinos

[5-1]
Search for GeV Neutrino Emission During Intense Gamma-Ray Solar Flares with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Phys.Rev. D103 (2021) 102001, arXiv:2101.00610.
[IceCube:2021jwt]

6 - Atmospheric Neutrinos

[6-1]
Measurement of Atmospheric Neutrino Mixing with Improved IceCube DeepCore Calibration and Data Processing, R. Abbasi et al. (IceCube), Phys.Rev.D 108 (2023) 012014, arXiv:2304.12236.
[IceCubeCollaboration:2023wtb]
[6-2]
Observation of Seasonal Variations of the Flux of High-Energy Atmospheric Neutrinos with IceCube, R. Abbasi et al., Eur.Phys.J.C 83 (2023) 777, arXiv:2303.04682.
[IceCube:2023qem]
[6-3]
Probing the Neutrino Mass Ordering with Atmospheric Neutrinos from Three Years of IceCube DeepCore Data, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C80 (2020) 9, arXiv:1902.07771.
[IceCube:2019dyb]
[6-4]
Measurement of Atmospheric Tau Neutrino Appearance with IceCube DeepCore, M. G. Aartsen et al. (IceCube), Phys.Rev. D99 (2019) 032007, arXiv:1901.05366.
[IceCube:2019dqi]
[6-5]
Search for Nonstandard Neutrino Interactions with IceCube DeepCore, M. G. Aartsen et al. (IceCube), Phys.Rev. D97 (2018) 072009, arXiv:1709.07079.
[IceCube:2017zcu]
[6-6]
Neutrino Interferometry for High-Precision Tests of Lorentz Symmetry with IceCube, M. G. Aartsen et al. (IceCube), Nature Phys. 14 (2018) 961-966, arXiv:1709.03434.
[IceCube:2017qyp]
[6-7]
Measurement of Atmospheric Neutrino Oscillations at 6-56 GeV with IceCube DeepCore, M. G. Aartsen et al. (IceCube), Phys.Rev.Lett. 120 (2018) 071801, arXiv:1707.07081.
[IceCube:2017lak]
[6-8]
Measurement of the $\nu_\mu$ energy spectrum with IceCube-79, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C77 (2017) 692, arXiv:1705.07780.
[IceCube:2017cyo]
[6-9]
Measurement of the Atmospheric $\nu_e$ Spectrum with IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. D91 (2015) 122004, arXiv:1504.03753.
[IceCube:2015mgt]
[6-10]
Determining neutrino oscillation parameters from atmospheric muon neutrino disappearance with three years of IceCube DeepCore data, M. G. Aartsen et al. (IceCube), Phys. Rev. D91 (2015) 072004, arXiv:1410.7227.
[IceCube:2014flw]
[6-11]
Development of a General Analysis and Unfolding Scheme and its Application to Measure the Energy Spectrum of Atmospheric Neutrinos with IceCube, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C75 (2015) 116, arXiv:1409.4535.
[IceCube:2014slq]
[6-12]
Measurement of Atmospheric Neutrino Oscillations with IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 111, 081801 (2013) 081801, arXiv:1305.3909.
[IceCube:2013pav]
[6-13]
Measurement of the Atmospheric $\nu_e$ flux in IceCube, M. G. Aartsen et al. (IceCube), Phys. Rev. Lett. 110 (2013) 151105, arXiv:1212.4760.
[IceCube:2012jwm]
[6-14]
Measurement of the atmospheric neutrino energy spectrum from 100 GeV to 400 TeV with IceCube, R. Abbasi et al. (IceCube), Phys. Rev. D83 (2011) 012001, arXiv:1010.3980.
[IceCube:2010whx]
[6-15]
Detection of Atmospheric Muon Neutrinos with the IceCube 9-String Detector, A. Achterberg et al. (IceCube), Phys. Rev. D76 (2007) 027101, arXiv:0705.1781.
[IceCube:2007yuo]

7 - Interactions

[7-1]
Strong constraints on neutrino nonstandard interactions from TeV-scale $\nu_\mu$ disappearance at IceCube, R. Abbasi et al. (IceCube), Phys.Rev.Lett. 129 (2022) 011804, arXiv:2201.03566.
[IceCube:2022ubv]
[7-2]
All-flavor constraints on nonstandard neutrino interactions and generalized matter potential with three years of IceCube DeepCore data, R. Abbasi et al. (IceCube), Phys.Rev.D 104 (2021) 072006, arXiv:2106.07755.
[IceCubeCollaboration:2021euf]
[7-3]
Measurement of the multi-TeV neutrino cross section with IceCube using Earth absorption, M. G. Aartsen et al. (IceCube), Nature 551 (2017) 596-600, arXiv:1711.08119.
[IceCube:2017roe]

8 - Cosmic Rays

[8-1]
Density of GeV muons in air showers measured with IceTop, R. Abbasi et al. (IceCube), Phys.Rev.D 106 (2022) 032010, arXiv:2201.12635.
[IceCubeCollaboration:2022tla]
[8-2]
Search for PeV Gamma-Ray Emission from the Southern Hemisphere with 5 Years of Data from the IceCube Observatory, M. G. Aartsen et al. (IceCube), Astrophys.J. 891 () 9, arXiv:1908.09918.
[IceCube:2019scr]
[8-3]
Cosmic Ray Spectrum and Composition from PeV to EeV Using 3 Years of Data From IceTop and IceCube, M.G. Aartsen et al. (IceCube), Phys.Rev. D100 (2019) 082002, arXiv:1906.04317.
[IceCube:2019hmk]
[8-4]
Detection of the temporal variation of the Sun's cosmic ray shadow with the IceCube detector, M.G. Aartsen et al. (IceCube), Astrophys.J. 872 (2019) 133, arXiv:1811.02015.
[IceCube:2018hfa]
[8-5]
Very High-Energy Gamma-Ray Follow-Up Program Using Neutrino Triggers from IceCube, M.G. Aartsen et al. (IceCube), JINST 11 (2016) P11009, arXiv:1610.01814.
[IceCube:2016xci]
[8-6]
Anisotropy in Cosmic-Ray Arrival Directions in the Southern Hemisphere with Six Years of Data from the IceCube Detector, M. G. Aartsen et al. (IceCube), Astrophys.J. 826 (2016) 220, arXiv:1603.01227.
[IceCube:2016biq]
[8-7]
Observation of Cosmic Ray Anisotropy with the IceTop Air Shower Array, M.G. Aartsen et al. (IceCube), Astrophys.J. 765 (2013) 55, arXiv:1210.5278.
[IceCube:2012vve]
[8-8]
Cosmic Ray Composition and Energy Spectrum from 1-30 PeV Using the 40-String Configuration of IceTop and IceCube, R. Abbasi et al. (IceCube), Astropart.Phys. 42 (2013) 15-32, arXiv:1207.3455.
[IceCube:2012vv]
[8-9]
All-particle cosmic ray energy spectrum measured with 26 IceTop stations, R. Abbasi et al. (IceCube), Astropart.Phys. 44 (2013) 40-58, arXiv:1202.3039.
[IceCube:2012cef]
[8-10]
Observation of an Anisotropy in the Galactic Cosmic Ray arrival direction at 400 TeV with IceCube, R. Abbasi et al. (IceCube), Astrophys. J. 746 (2012) 33, arXiv:1109.1017.
[IceCube:2011uwn]
[8-11]
Observation of Anisotropy in the Arrival Directions of Galactic Cosmic Rays at Multiple Angular Scales with IceCube, R. Abbasi et al. (IceCube), Nucl. Phys. B, Proc. Suppl. 212-213 2011 (2011) 201-206, arXiv:1105.2326.
[IceCube:2011fxx]
[8-12]
Measurement of the Anisotropy of Cosmic Ray Arrival Directions with IceCube, R. Abbasi et al. (IceCube), Astrophys. J. 718 (2010) L194, arXiv:1005.2960.
[IceCube:2010tuw]

9 - Dark Matter

[9-1]
Search for neutrino lines from dark matter annihilation and decay with IceCube, R. Abbasi et al. (IceCube), Phys.Rev.D 108 (2023) 102004, arXiv:2303.13663.
[IceCube:2023ies]
[9-2]
Improved Characterization of the Astrophysical Muon-Neutrino Flux with 9.5 Years of IceCube Data, R. Abbasi et al., Astrophys.J. 928 (2022) 50, arXiv:2111.10299.
[IceCube:2021uhz]
[9-3]
Search for GeV-scale Dark Matter Annihilation in the Sun with IceCube DeepCore, R. Abbasi et al. (IceCube), Phys.Rev.D 105 (2022) 062004, arXiv:2111.09970.
[IceCube:2021xzo]
[9-4]
Combined search for neutrinos from dark matter self-annihilation in the Galactic Centre with ANTARES and IceCube, M. G. Aartsen et al. (ANTARES,IceCube), Phys.Rev. D102 (2020) 082002, arXiv:2003.06614.
[ANTARES:2020leh]
[9-5]
Velocity independent constraints on spin-dependent DM-nucleon interactions from IceCube and PICO, C. Amole et al. (IceCube,PICO), arXiv:1907.12509, 2019.
[Amole:2019grr]
[9-6]
Search for neutrinos from decaying dark matter with IceCube, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C78 (2018) 831, arXiv:1804.03848.
[IceCube:2018tkk]
[9-7]
Search for annihilating dark matter in the Sun with 3 years of IceCube data, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C77 (2017) 146, arXiv:1612.05949.
[IceCube:2016dgk]
[9-8]
First search for dark matter annihilations in the Earth with the IceCube Detector, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C77 (2017) 82, arXiv:1609.01492.
[IceCube:2016aga]
[9-9]
All-flavour Search for Neutrinos from Dark Matter Annihilations in the Milky Way with IceCube/DeepCore, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C76 (2016) 531, arXiv:1606.00209.
[IceCube:2016oqp]
[9-10]
Improved limits on dark matter annihilation in the Sun with the 79-string IceCube detector and implications for supersymmetry, M. G. Aartsen et al. (IceCube), JCAP 1604 (2016) 022, arXiv:1601.00653.
[IceCube:2016yoy]
[9-11]
Search for Dark Matter Annihilation in the Galactic Center with IceCube-79, M. G. Aartsen et al. (IceCube), Eur. Phys. J. C75 (2015) 492, arXiv:1505.07259.
[IceCube:2015rnn]
[9-12]
Multipole analysis of IceCube data to search for dark matter accumulated in the Galactic halo, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C75 (2015) 20, arXiv:1406.6868.
[IceCube:2014rqf]
[9-13]
An IceCube Search for Dark Matter Annihilation in nearby Galaxies and Galaxy Clusters, M. G. Aartsen et al. (IceCube), Phys. Rev. D88 (2013) 122001, arXiv:1307.3473.
[IceCube:2013bas]
[9-14]
Search for dark matter annihilations in the Sun with the 79-string IceCube detector, R. Abbasi et al. (IceCube), Phys. Rev. Lett. 110 (2013) 131302, arXiv:1212.4097.
[IceCube:2012ugg]
[9-15]
Search for Neutrinos from Annihilating Dark Matter in the Direction of the Galactic Center with the 40-String IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), arXiv:1210.3557, 2012.
[IceCube:2012khg]
[9-16]
Multi-year search for dark matter annihilations in the Sun with the AMANDA-II and IceCube detectors, R. Abbasi et al. (IceCube), Phys. Rev. D85 (2012) 042002, arXiv:1112.1840.
[IceCube:2011aj]
[9-17]
Search for Dark Matter from the Galactic Halo with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Phys. Rev. D84 (2011) 022004, arXiv:1101.3349.
[IceCube:2011kcp]
[9-18]
Limits on a muon flux from Kaluza-Klein dark matter annihilations in the Sun from the IceCube 22-string detector, R. Abbasi et al. (IceCube), Phys. Rev. D81 (2010) 057101, arXiv:0910.4480.
[IceCube:2009jui]

10 - Physics

[10-1]
Search for Quantum Gravity Using Astrophysical Neutrino Flavour with IceCube, R. Abbasi et al. (IceCube), Nature Phys. 18 (2022) 1287-1292, arXiv:2111.04654.
[IceCube:2021tdn]
[10-2]
Search for non-relativistic Magnetic Monopoles with IceCube, M. G. Aartsen et al. (IceCube), Eur.Phys.J. C74 (2014) 2938, arXiv:1402.3460.
[IceCube:2014xnp]
[10-3]
Search for Galactic PeV Gamma Rays with the IceCube Neutrino Observatory, R. Abbasi et al. (IceCube), Phys. Rev. D87 (2013) 062002, arXiv:1210.7992.
[IceCube:2012vku]
[10-4]
Search for Relativistic Magnetic Monopoles with IceCube, R. Abbasi et al. (IceCube), Phys. Rev. D87 (2013) 022001, arXiv:1208.4861.
[IceCube:2012khj]
[10-5]
Searching for soft relativistic jets in Core-collapse Supernovae with the IceCube Optical Follow-up Program, R. Abbasi et al. (IceCube), Astron. Astrophys. 539 (2012) A60, arXiv:1111.7030.
[IceCube:2011wip]

11 - Phenomenology

[11-1]
Searching for Decoherence from Quantum Gravity at the IceCube South Pole Neutrino Observatory, R. Abbasi et al., arXiv:2308.00105, 2023.
[IceCube:2023gzt]
[11-2]
Combined sensitivity to the neutrino mass ordering with JUNO, the IceCube Upgrade, and PINGU, M. G. Aartsen et al. (IceCube), Phys.Rev. D101 (2020) 032006, arXiv:1911.06745.
[IceCube-Gen2:2019fet]
[11-3]
Use of event-level neutrino telescope data in global fits for theories of new physics, P. Scott et al. (IceCube), JCAP JCAP11 (2012) 057, arXiv:1207.0810.
[IceCube:2012fvn]
[11-4]
Physics Reach of High-Energy and High-Statistics IceCube Atmospheric Neutrino Data, M.C. Gonzalez-Garcia, F. Halzen, M. Maltoni, Phys. Rev. D71 (2005) 093010, arXiv:hep-ph/0502223.
[Gonzalez-Garcia:2005ryx]
[11-5]
IceCube-Plus: An Ultra-High Energy Neutrino Telescope, Francis Halzen, Dan Hooper, JCAP 0401 (2004) 002, arXiv:astro-ph/0310152.
[Halzen:2003fi]
[11-6]
Gamma Ray Astronomy With IceCube, Francis Halzen, Dan Hooper, JCAP 0308 (2003) 006, arXiv:astro-ph/0305234.
[Halzen:2003ty]
[11-7]
Sensitivity of the IceCube Detector to Astrophysical Sources of High Energy Muon Neutrinos, J. Ahrens et al. (IceCube), Astropart. Phys. 20 (2004) 507, arXiv:astro-ph/0305196.
[IceCube:2003llu]
[11-8]
Neutrino telescopes' sensitivity to dark matter, Ivone F. M. Albuquerque, Jodi Lamoureux, George F. Smoot, Phys. Rev. D66 (2002) 125006, arXiv:hep-ph/0204301.
[Albuquerque:2002bj]
[11-9]
Detecting microscopic black holes with neutrino telescopes, Jaime Alvarez-Muniz, Jonathan L. Feng, Francis Halzen, Tao Han, Dan Hooper, Phys. Rev. D65 (2002) 124015, arXiv:hep-ph/0202081.
[Alvarez-Muniz:2002snq]
[11-10]
Observing the birth of supermassive black holes with the IceCube neutrino detector, Xiang-dong Shi, George M. Fuller, Francis Halzen, Phys. Rev. Lett. 81 (1998) 5722-5725, arXiv:astro-ph/9805242.
[Shi:1998jx]

12 - Detector

[12-1]
Improved modeling of in-ice particle showers for IceCube event reconstruction, R. Abbasi et al., arXiv:2403.02470, 2024.
[Abbasi:2024wpf]
[12-2]
New IceTop trigger in the context of the planned IceCube surface detector enhancement at the South Pole, Ek Narayan Paudel (IceCube), JINST 19 (2024) C01031, arXiv:2401.12026.
[Paudel:2024wtm]
[12-3]
Citizen Science for IceCube: Name that Neutrino, R. Abbasi et al., arXiv:2401.11994, 2024.
[IceCube:2024wav]
[12-4]
Graph Neural Networks for Low-Energy Event Classification \& Reconstruction in IceCube, R. Abbasi et al. (IceCube), JINST 17 (2022) P11003, arXiv:2209.03042.
[IceCube:2022njh]
[12-5]
Framework and Tools for the Simulation and Analysis of the Radio Emission from Air Showers at IceCube, R. Abbasi et al., JINST 17 (2022) P06026, arXiv:2205.02258.
[IceCube:2022dcd]
[12-6]
Low Energy Event Reconstruction in IceCube DeepCore, R. Abbasi et al., Eur.Phys.J.C 82 (2022) 807, arXiv:2203.02303.
[IceCube:2022kff]
[12-7]
A muon-track reconstruction exploiting stochastic losses for large-scale Cherenkov detectors, R. Abbasi et al., JINST 16 (2021) P08034, arXiv:2103.16931.
[IceCube:2021oqo]
[12-8]
A Convolutional Neural Network based Cascade Reconstruction for the IceCube Neutrino Observatory, R. Abbasi et al., JINST 16 (2021) P07041, arXiv:2101.11589.
[Abbasi:2021ryj]
[12-9]
A self-monitoring precision calibration light source for large-volume neutrino telescopes, F. Henningsen et al., JINST 15 (2020) P07031, arXiv:2005.00778.
[Henningsen:2020zsj]
[12-10]
In-situ calibration of the single-photoelectron charge response of the IceCube photomultiplier tubes, M. G. Aartsen et al. (IceCube), JINST 15 (2020) P06032, arXiv:2002.00997.
[IceCube:2020nwx]
[12-11]
Efficient propagation of systematic uncertainties from calibration to analysis with the SnowStorm method in IceCube, M. G. Aartsen et al., JCAP 1910 (2019) 048, arXiv:1909.01530.
[IceCube:2019lxi]
[12-12]
ABALONE Photosensors for the IceCube Experiment, Daniel Ferenc et al., Nucl.Instrum.Meth. A954 (2020) 161498, arXiv:1810.00280.
[Ferenc:2018ymb]
[12-13]
Graph Neural Networks for IceCube Signal Classification, Nicholas Choma et al., arXiv:1809.06166, 2018.
[IceCube:2018gms]
[12-14]
Computational Techniques for the Analysis of Small Signals in High-Statistics Neutrino Oscillation Experiments, M. G. Aartsen et al. (IceCube-Gen2), Nucl.Instrum.Meth. A977 (2020) 164332, arXiv:1803.05390.
[IceCube:2018ikn]
[12-15]
The IceCube Realtime Alert System, M. G. Aartsen et al. (IceCube), Astropart.Phys. 92 (2017) 30-41, arXiv:1612.06028.
[IceCube:2016cqr]
[12-16]
The IceCube Neutrino Observatory: Instrumentation and Online Systems, M. G. Aartsen et al. (IceCube), JINST 12 (2017) P03012, arXiv:1612.05093.
[IceCube:2016zyt]
[12-17]
Energy Reconstruction Methods in the IceCube Neutrino Telescope, M. G. Aartsen et al. (IceCube), JINST 9 (2014) P03009, arXiv:1311.4767.
[IceCube:2013dkx]
[12-18]
Measurement of South Pole ice transparency with the IceCube LED calibration system, M. G. Aartsen et al. (IceCube), Nucl.Instrum.Meth. A711 (2013) 73-89, arXiv:1301.5361.
[IceCube:2013llx]
[12-19]
IceTop: The surface component of IceCube, R. Abbasi et al. (IceCube), Nucl.Instrum.Meth. A700 (2013) 188-220, arXiv:1207.6326.
[IceCube:2012nn]
[12-20]
The Design and Performance of IceCube DeepCore, R. Abbasi et al. (IceCube), Astropart. Phys. 35 (2012) 615-624, arXiv:1109.6096.
[IceCube:2011ucd]
[12-21]
A Radio Air-Shower Test Array (RASTA) for IceCube, Sebastian Boser (IceCube), Nucl. Instrum. Meth. A662 (2012) S66-S68, arXiv:1010.1737.
[Boser:2010sw]
[12-22]
Calibration and Characterization of the IceCube Photomultiplier Tube, R. Abbasi et al. (IceCube), Nucl. Instrum. Meth. A618 (2010) 139-152, arXiv:1002.2442.
[IceCube:2010dpc]
[12-23]
Measurement of sound speed vs. depth in South Pole ice for neutrino astronomy, R. Abbasi et al. (IceCube), Astropart. Phys. 33 (2010) 277-286, arXiv:0909.2629.
[IceCube:2009xwa]
[12-24]
First year performance of the IceCube neutrino telescope, A. Achterberg et al. (IceCube), Astropart. Phys. 26 (2006) 155-173, arXiv:astro-ph/0604450.
[IceCube:2006tjp]
[12-25]
The ICECUBE prototype string in AMANDA, AMANDA Collaboration et al. (AMANDA), Nucl. Instrum. Meth. A556 (2006) 169, arXiv:astro-ph/0601397.
[AMANDA:2006jdm]
[12-26]
Attenuation of acoustic waves in glacial ice and salt domes, P. B. Price, J.Geophys.Res. (2005), arXiv:astro-ph/0506648.
[Price:2005sn]

13 - PINGU

[13-1]
PINGU: A Vision for Neutrino and Particle Physics at the South Pole, M. G. Aartsen et al. (IceCube-Gen2), J.Phys. G44 (2017) 054006, arXiv:1607.02671.
[IceCube:2016xxt]
[13-2]
Letter of Intent: The Precision IceCube Next Generation Upgrade (PINGU), M. G. Aartsen et al. (IceCube-PINGU), arXiv:1401.2046, 2014.
[IceCube-PINGU:2014okk]

14 - Future Experiments

[14-1]
IceCube-Gen2: The Window to the Extreme Universe, M.G. Aartsen et al. (IceCube-Gen2), J.Phys. G48 (2021) 060501, arXiv:2008.04323.
[IceCube-Gen2:2020qha]
[14-2]
Design and Performance of the first IceAct Demonstrator at the South Pole, M. G. Aartsen et al. (IceCube), JINST 15 (2020) T02002, arXiv:1910.06945.
[IceCube:2019yev]

15 - Talks

[15-1]
IceCube - Neutrinos in Deep Ice The Top 3 Solutions from the Public Kaggle Competition, Habib Bukhari, Dipam Chakraborty, Philipp Eller, Takuya Ito, Maxim V. Shugaev, Rasmus \Ors\oe, arXiv:2310.15674, 2023.
[Bukhari:2023ezc]
[15-2]
The IceCube-Gen2 Collaboration - Contributions to the 38th International Cosmic Ray Conference (ICRC2023), R. Abbasi et al. (IceCube-Gen2), arXiv:2307.13048, 2023. ICRC 2023.
[IceCube-Gen2:2023qad]
[15-3]
The IceCube Collaboration - Contributions to the 38th International Cosmic Ray Conference (ICRC2023), R. Abbasi et al. (IceCube), arXiv:2307.13047, 2023. ICRC 2023.
[IceCube:2023mwx]
[15-4]
Design and Expected Performance of the IceCube-Gen2 Surface Array and its Radio Component (ARENA2022), Frank G. Schroder (IceCube-Gen2), PoS 424 (2023) 058, arXiv:2306.05900.
[Schroder:2023lux]
[15-5]
New Measurement of Muon Neutrino Disappearance from the IceCube Experiment, Shiqi Yu (IceCube), arXiv:2305.16514, 2023.
[Yu:2023igv]
[15-6]
Searching for Neutrino Transients Below 1 TeV with IceCube, Michael Larson, Jason Koskinen, Alex Pizzuto, Justin Vandenbroucke (IceCube), PoS ICRC2021 (2021) 1131, arXiv:2108.01530. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021oos]
[15-7]
The Surface Array planned for IceCube-Gen2, Frank G. Schroeder (IceCube-Gen2), PoS ICRC2021 (2021) 407, arXiv:2108.00364. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube-Gen2:2021aek]
[15-8]
Concept Study of a Radio Array Embedded in a Deep Gen2-like Optical Array, Abby Bishop, Lu Lu, Albrecht Karle, Ben Hokanson-Fasig (IceCube-Gen2), arXiv:2108.00283, 2021. 37th International Cosmic Ray Conference (ICRC 2021).
[Bishop:2021cvr]
[15-9]
Characterization of the PeV astrophysical neutrino energy spectrum with IceCube using down-going tracks, Yang Lyu (IceCube), arXiv:2107.14298, 2021. 37th International Cosmic Ray Conference (ICRC 2021).
[2107.14298]
[15-10]
Recent Progress in Solar Atmospheric Neutrino Searches with IceCube, Joshua Villarreal, Gerrit Roellinghoff, Jeffrey Lazar (IceCube), PoS ICRC2021 (2021) 1174, arXiv:2107.13696. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021koo]
[15-11]
Searching for time-dependent high-energy neutrino emission from X-ray binaries with IceCube, Qinrui Liu, Ali Kheirandish (IceCube), PoS ICRC2021 (2021) 1136, arXiv:2107.12383. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021vlt]
[15-12]
Reconstruction of Neutrino Events in IceCube using Graph Neural Networks, Martin Ha Minh (IceCube), PoS ICRC2021 (2021) 1044, arXiv:2107.12187. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021dvc]
[15-13]
Camera Calibration for the IceCube Upgrade and Gen2, Woosik Kang, Jiwoong Lee, Gerrit Roellinghoff, Carsten Rott, Christoph Tonnis (IceCube), PoS ICRC2021 (2021) 1064, arXiv:2107.12186. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021jfx]
[15-14]
Every Flare, Everywhere: An All-Sky Untriggered Search for Astrophysical Neutrino Transients Using IceCube Data, Francesco Lucarelli, William Luszczak (IceCube), PoS ICRC2021 (2021) 1128, arXiv:2107.12134. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021vwl]
[15-15]
Design, performance, and analysis of a measurement of optical properties of antarctic ice below 400 nm, Jannes Brostean-Kaiser (IceCube), PoS ICRC2021 (2021) 1057, arXiv:2107.11809. 37th International Cosmic Ray Conference (ICRC 2021).
[Brostean-Kaiser:2021udi]
[15-16]
A Search for Neutrinos from Decaying Dark Matter in Galaxy Clusters and Galaxies with IceCube, Minjin Jeong (IceCube), PoS ICRC2021 (2021) 506, arXiv:2107.11527. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021sog]
[15-17]
Dark Matter Neutrino Scattering in the Galactic Center with IceCube, Adam McMullen, Aaron Vincent, Carlos Arguelles, Austin Schneider (IceCube), JINST 16 (2021) C08001, arXiv:2107.11491. 37th International Cosmic Ray Conference (ICRC 2021).
[McMullen:2021ikf]
[15-18]
Observation of Cosmic Ray Anisotropy with Nine Years of IceCube Data, Frank McNally, Rasha Abbasi, Paolo Desiati, Juan Carlos Diaz Velez, Timothy Aguado, Katherine Gruchot, Andrew Moy, Alexander Simmons, Andrew Thorpe, Hannah Woodward, PoS ICRC2021 (2021) 320, arXiv:2107.11454. 37th International Cosmic Ray Conference (ICRC 2021).
[Abbasi:2021kjd]
[15-19]
Reconstructing Neutrino Energy using CNNs for GeV Scale IceCube Events, Jessie Micallef (IceCube), PoS ICRC2021 (2021) 1053, arXiv:2107.11446. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021gpn]
[15-20]
Design of a Robust Fiber Optic Communications System for Future IceCube Detectors, Robert Halliday, Tyce DeYoung, Chris Ng, Darren Grant, Brian Ferguson, Dean Shooltz (IceCube), PoS ICRC2021 (2021) 1079, arXiv:2107.11427. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021wms]
[15-21]
Design and performance of the multi-PMT optical module for IceCube Upgrade, T. Anderson, L. Classen, A.T. Fienberg, S. Mechbal, J. Schneider, K.-H. Sulanke, M.A. Unland Elorrieta, C. Wendt (IceCube), PoS ICRC2021 (2021) 1070, arXiv:2107.11383. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021eij]
[15-22]
Discrimination of muons for mass composition studies of inclined air showers detected with IceTop, Aswathi Balagopal V. (IceCube), PoS ICRC2021 (2021) 212, arXiv:2107.11293. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021kcv]
[15-23]
Gravitational Wave Follow-Up Using Low Energy Neutrinos in IceCube DeepCore, Aswathi Balagopal V., Raamis Hussain, Alex Pizzuto (IceCube), PoS ICRC2021 (2021) 939, arXiv:2107.11285. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021ahz]
[15-24]
Search for dark matter from the center of the Earth with 8 years of IceCube data, Giovanni Renzi (IceCube), arXiv:2107.11244, 2021. 37th International Cosmic Ray Conference (ICRC 2021).
[2107.11244]
[15-25]
Indirect search for dark matter in the Galactic Centre with IceCube, Nadege Iovine, Juan A. Aguilar (IceCube), arXiv:2107.11224, 2021. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021kuw]
[15-26]
Deployment of the IceCube Upgrade Camera System in the SPICEcore hole, Christoph Tonnis, Danim Kim, Anna Pollmann, Carsten Rott (IceCube), PoS ICRC2021 (2021) 1047, arXiv:2107.10786. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021trt]
[15-27]
Search for secluded dark matter with 6 years of IceCube data, Christoph Tonnis (IceCube), arXiv:2107.10778, 2021. 37th International Cosmic Ray Conference (ICRC 2021).
[Tonnis:2021krs]
[15-28]
A calibration study of local ice and optical sensor properties in IceCube, Dmitry Chirkin (IceCube), PoS ICRC2021 (2021) 1023, arXiv:2107.10435. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021lmu]
[15-29]
A Time-independent Search for Neutrinos from Galaxy Clusters with IceCube, Mehr Un Nisa, Andrew Ludwig (IceCube), PoS ICRC2021 (2021) 1133, arXiv:2107.10080. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021abh]
[15-30]
Search for STaus in IceCube, Jan-Henrik Schmidt-Dencker, Stephan Meighen-Berger, Christian Haack (IceCube), arXiv:2107.10049, 2021. 37th International Cosmic Ray Conference (ICRC 2021).
[Schmidt-Dencker:2021xmg]
[15-31]
A Combined Fit of the Diffuse Neutrino Spectrum using IceCube Muon Tracks and Cascades, Erik Ganster, Richard Naab, Zelong Zhang (IceCube), PoS ICRC2021 (2021) 1129, arXiv:2107.10003. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021jmr]
[15-32]
Development of a scintillation and radio hybrid detector array at the South Pole, Marie Oehler, Roxanne Turcotte-Tardif (IceCube), PoS ICRC2021 (2021) 225, arXiv:2107.09983. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021ydy]
[15-33]
Searches for and Characterization of Astrophysical Neutrinos using Starting Track Events in IceCube, Sarah Mancina, Manuel Silva (IceCube), PoS ICRC2021 (2021) 1130, arXiv:2107.09811. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021ctg]
[15-34]
Measuring total neutrino cross section with IceCube at intermediate energies ($\sim$100 GeV to a few TeV), Sarah Nowicki (IceCube), PoS ICRC2021 (2021) 1132, arXiv:2107.09764. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021jhz]
[15-35]
Simulation Study of the Observed Radio Emission of Air Showers by the IceTop Surface Extension, Alan Coleman (IceCube), PoS ICRC2021 (2021) 317, arXiv:2107.09666. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021qnf]
[15-36]
Multi-messenger searches via IceCube's high-energy neutrinos and gravitational-wave detections of LIGO/Virgo, Doğa Veske, Raamis Hussain, Zsuzsa Marka, Stefan Countryman, Alex Pizzuto, Yasmeen Asali, Ana Silva Oliveira, Justin Vandenbroucke (IceCube), PoS ICRC2021 (2021) 950, arXiv:2107.09663. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021ads]
[15-37]
Study of Mass Composition of Cosmic Rays with IceTop and IceCube, Paras Koundal, Matthias Plum, Julian Saffer (IceCube), PoS ICRC2021 (2021) 323, arXiv:2107.09626. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021ldz]
[15-38]
Realtime Follow-up of Astrophysical Transients with the IceCube Neutrino Observatory, Alex Pizzuto, Abhishek Desai, Raamis Hussain (IceCube), PoS ICRC2021 (2021) 952, arXiv:2107.09551. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021oyo]
[15-39]
Testing Hadronic Interaction Models with Cosmic Ray Measurements at the IceCube Neutrino Observatory, Stef Verpoest, Dennis Soldin, Sam De Ridder (IceCube), PoS ICRC2021 (2021) 357, arXiv:2107.09387. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021ixw]
[15-40]
Seasonal Variations of the Unfolded Atmospheric Neutrino Spectrum with IceCube, Karolin Hymon, Tim Ruhe (IceCube), PoS ICRC2021 (2021) 1159, arXiv:2107.09349. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021eth]
[15-41]
Searching for High-Energy Neutrinos from Core-Collapse Supernovae with IceCube, Jannis Necker (IceCube), PoS ICRC2021 (2021) 1116, arXiv:2107.09317. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021oiv]
[15-42]
Search for Astrophysical Neutrino Transients with IceCube DeepCore, Chujie Chen, Pranav Dave, Ignacio Taboada (IceCube), PoS ICRC2021 (2021) 1143, arXiv:2107.09254. 37th International Cosmic Ray Conference (ICRC 2021).
[Chen:2021hkl]
[15-43]
A Search for Neutrino Sources with Cascade Events in IceCube, Steve Sclafani, Mirco Hunnefeld, PoS ICRC2021 (2021) 1150, arXiv:2107.09103. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021mbf]
[15-44]
The SkyLLH framework for IceCube point-source search, Tomas Kontrimas, Martin Wolf (IceCube), PoS ICRC2021 (2021) 1073, arXiv:2107.08934. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021mzg]
[15-45]
Sensitivity studies for the IceCube-Gen2 radio array, Steffen Hallmann, Brian Clark, Christian Glaser, Daniel Smith (IceCube-Gen2), PoS ICRC2021 (2021) 1183, arXiv:2107.08910. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube-Gen2:2021rkf]
[15-46]
Searches for Neutrinos from Precursors and Afterglows of Gamma-ray Bursts using the IceCube Neutrino Observatory, Kunal Deoskar, Paul Coppin, Elizabeth Friedman (IceCube), PoS ICRC2021 (2021) 1118, arXiv:2107.08870. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021qyj]
[15-47]
Search for high-energy neutrino sources from the direction of IceCube alert events, Martina Karl, Philipp Eller, Anna Schubert (IceCube), PoS ICRC2021 (2021) 940, arXiv:2107.08853. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021kxg]
[15-48]
A next-generation optical sensor for IceCube-Gen2, Vedant Basu, Aya Ishihara, Markus Dittmer, Nobuhiro Shimizu (IceCube-Gen2), PoS ICRC2021 (2021) 1062, arXiv:2107.08837. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube-Gen2:2021qxw]
[15-49]
First Air-Shower Measurements with the Prototype Station of the IceCube Surface Enhancement, Hrvoje Dujmovic, Alan Coleman, Marie Oehler (IceCube), PoS ICRC2021 (2021) 314, arXiv:2107.08750. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021epf]
[15-50]
A New Search for Neutrino Point Sources with IceCube, Chiara Bellenghi, Theo Glauch, Christian Haack, Tomas Kontrimas, Hans Niederhausen, Rene Riemann, Martin Wolf (IceCube), PoS ICRC2021 (2021) 1138, arXiv:2107.08700. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021wbi]
[15-51]
A Novel Microstructure-Based Model to Explain the IceCube Ice Anisotropy, Martin Rongen, Dmitry Chirkin (IceCube), PoS ICRC2021 (2021) 1119, arXiv:2107.08692. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021xhi]
[15-52]
Studies of systematic uncertainty effects on IceCube's real-time angular uncertainty, Cristina Lagunas Gualda, Yosuke Ashida, Ankur Sharma, Hamish Thomas (IceCube), PoS ICRC2021 (2021) 1045, arXiv:2107.08670. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021uwf]
[15-53]
Simulation and sensitivities for a phased IceCube-Gen2 deployment, Brian Clark, Robert Halliday (IceCube-Gen2), PoS ICRC2021 (2021) 1186, arXiv:2107.08500. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube-Gen2:2021pdk]
[15-54]
IceCube Search for High-Energy Neutrinos from Ultra-Luminous Infrared Galaxies, Pablo Correa, Krijn D. de Vries, Nick van Eijndhoven (IceCube), PoS ICRC2021 (2021) 1115, arXiv:2107.08422. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021zfm]
[15-55]
Search for high-energy neutrino emission from hard X-ray AGN with IceCube, Sreetama Goswami, George C. Privon, Marcos Santander, PoS ICRC2021 () 1142, arXiv:2107.08366. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCubecollaboration2:2021zto]
[15-56]
Searching for Sources of High Energy Neutrinos from Magnetars with IceCube, Ava Ghadimi, Marcos Santander (IceCube), PoS ICRC2021 (2021) 1135, arXiv:2107.08322. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021tep]
[15-57]
Analysis Framework for Multi-messenger Astronomy with IceCube, Kwok Lun Fan, John Evans, Michael Larson (IceCube), PoS ICRC2021 (2021) 1098, arXiv:2107.08254. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021xps]
[15-58]
A model-independent analysis of neutrino flares detected in IceCube from X-ray selected blazars, Ankur Sharma, Erin O'Sullivan (IceCube), PoS ICRC2021 (2021) 971, arXiv:2107.08159. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021oqh]
[15-59]
Testing the AGN Radio and Neutrino correlation using the MOJAVE catalog and 10 years of IceCube Data, Abhishek Desai, Justin Vandenbroucke, Alex Pizzuto (IceCube), PoS ICRC2021 (2021) 949, arXiv:2107.08115. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021imv]
[15-60]
End-to-End Tests of the Sensitivity of IceCube to the Neutrino Burst from a Core-Collapse Supernova, Spencer Griswold (IceCube), PoS ICRC2021 (2021) 1085, arXiv:2107.08098. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021mpg]
[15-61]
The IceCube-Gen2 Collaboration - Contributions to the 37th International Cosmic Ray Conference (ICRC2021), R. Abbasi et al. (IceCube-Gen2), arXiv:2107.06968, 2021. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[IceCube-Gen2:2021yep]
[15-62]
The IceCube Collaboration - Contributions to the 37th International Cosmic Ray Conference (ICRC2021), R. Abbasi et al. (IceCube), arXiv:2107.06966, 2021. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[IceCube:2021fyh]
[15-63]
Direction Reconstruction using a CNN for GeV-Scale Neutrinos in IceCube, Shiqi Yu (IceCube), PoS ICRC2021 (2021) 1054, arXiv:2107.02122. 37th International Cosmic Ray Conference (ICRC 2021).
[IceCube:2021oxp]
[15-64]
Search for correlations of high-energy neutrinos and ultra-high energy cosmic rays, A. Barbano (IceCube, Pierre Auger, Telescope Array, ANTARES), PoS ICRC2019 (2019) 842, arXiv:2001.09057. 36th International Cosmic Ray Conference (ICRC 2019).
[Barbano:2020scg]
[15-65]
High-energy particle physics with IceCube, Tianlu Yuan (IceCube), J.Phys.Conf.Ser. 1468 (2020) 012140, arXiv:2001.08657. TAUP 2019.
[Yuan:2020bho]
[15-66]
IceCube Search for Galactic Neutrino Sources based on Very High Energy Gamma-ray Observations, Ali Kheirandish, J.Phys.Conf.Ser. 1468 (2020) 012081, arXiv:2001.08524. TAUP 2019.
[Kheirandish:2020zll]
[15-67]
Recent IceCube Measurements Using High Energy Neutrinos, Hans Niederhausen (IceCube), arXiv:1909.12182, 2019. EDS Blois 2019 Conference, Quy Nhon, Vietnam, June 23-28, 2019.
[Niederhausen:2019nmd]
[15-68]
Constraints on light meson production in air-showers with atmospheric neutrinos below 1~TeV interacting in IceCube's DeepCore, Anatoli Fedynitch, Juan-Pablo Yanez (IceCube), PoS ICRC2019 (2020) 882, arXiv:1909.10716. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Fedynitch:2019bbp]
[15-69]
Cosmic Neutrinos and the Cosmic-Ray Accelerator TXS 0506+056, Francis Halzen (IceCube), PoS ICRC2019 (2020) 021, arXiv:1909.09468. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Halzen:2019lxc]
[15-70]
Unfolding the True Atmospheric Neutrino Event Rate in the 1Gev - 1Tev Range Using IceCube/DeepCore, Joakim Sandroos (IceCube), PoS ICRC2019 (2020) 999, arXiv:1909.07174. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Sandroos:2019oct]
[15-71]
IceCube as a Multi-messenger Follow-up Observatory for Astrophysical Transients, Kevin Meagher, Alex Pizzuto, Justin Vandenbroucke (IceCube), PoS ICRC2019 (2020) 1026, arXiv:1909.05834. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Meagher:2019edi]
[15-72]
Results from IceCube, Dawn R. Williams (IceCube), Int.J.Mod.Phys.Conf.Ser. 46 (2018) 1860048, arXiv:1909.05173. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Williams:2018kpe]
[15-73]
Astrophysical Tau Neutrino Identification with IceCube Waveforms, Logan Wille, Donglian Xu (IceCube), PoS ICRC2019 (2020) 1036, arXiv:1909.05162. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Wille:2019pub]
[15-74]
Model-independent Measurement of the Atmospheric Muon Neutrino Energy Spectrum up to 2.5 PeV, Tobias Hoinka, Jan Soedingrekso, Mathis Borner (IceCube), PoS ICRC2019 (2020) 912, arXiv:1909.05129. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Soedingresko:2019zii]
[15-75]
Search for Astrophysical Tau Neutrinos with an Improved Double Pulse Method, Maximilian Meier, Jan Soedingrekso (IceCube), PoS ICRC2019 (2020) 960, arXiv:1909.05127. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Meier:2019ypu]
[15-76]
Search for Dark Matter Annihilation to Neutrinos from the Sun, Carlos A. Arguelles, Ali Kheirandish, Jeffrey Lazar, Qinrui Liu (IceCube), PoS ICRC2019 (2020) 527, arXiv:1909.03930. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Arguelles:2019jfx]
[15-77]
Simulation and Reconstruction Study of a Future Surface Scintillator Array at the IceCube Neutrino Observatory, Agnieszka Leszczynska, Matthias Plum (IceCube), PoS ICRC2019 (2020) 332, arXiv:1909.02258. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Leszczynska:2019ahq]
[15-78]
An Acoustic Calibration System for the IceCube Upgrade, Dirk Heinen, Shefali, Roxanne Turcotte, Lars Steffen Weinstock, Christopher Wiebusch, Simon Zierke (IceCube), PoS ICRC2019 (2020) 1030, arXiv:1909.02047. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Heinen:2019lwd]
[15-79]
Seasonal Variation of Atmospheric Neutrinos in IceCube, Patrick Heix, Serap Tilav, Christopher Wiebusch, Marit Zocklein (IceCube), PoS ICRC2019 (2020) 465, arXiv:1909.02036. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Heix:2019jib]
[15-80]
Seasonal variation of atmospheric muons in IceCube, Serap Tilav, Thomas K. Gaisser, Dennis Soldin, Paolo Desiati (IceCube), PoS ICRC2019 (2020) 894, arXiv:1909.01406. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Tilav:2019xmf]
[15-81]
Implementing IceCube in SNOwGLoBES, Felix Malmenbeck, Erin O'Sullivan (IceCube), arXiv:1909.00886, 2019. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Malmenbeck:2019giw]
[15-82]
Searches for neutrinos from fast radio bursts with IceCube, Ali Kheirandish, Alex Pizzuto, Justin Vandenbroucke (IceCube), PoS ICRC2019 (2020) 982, arXiv:1909.00078. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Kheirandish:2019dii]
[15-83]
Electronics Development for the New Photo-Detectors (PDOM and D-Egg) for IceCube-Upgrade, Ryo Nagai, Aya Ishihara (IceCube), PoS ICRC2019 (2020) 966, arXiv:1908.11564. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Nagai:2019uaz]
[15-84]
Science Case of a Scintillator and Radio Surface Array at IceCube, Frank G. Schroder (IceCube), PoS ICRC2019 (2020) 418, arXiv:1908.11469. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Schroder:2019suq]
[15-85]
A multi-PMT Optical Module for the IceCube Upgrade, Lew Classen, Alexander Kappes, Timo Karg (IceCube), PoS ICRC2019 (2020) 855, arXiv:1908.10802. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[IceCube:2019anq]
[15-86]
Calibration LEDs in the IceCube Upgrade D-Egg Modules, Aya Ishihara, Ayumi Kiriki (IceCube), PoS ICRC2019 (2020) 923, arXiv:1908.10780. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Ishihara:2019uei]
[15-87]
Design and performance of a UV-calibration device for the SPICEcore hole, Jannes Brostean-Kaiser (IceCube), PoS ICRC2019 (2020) 847, arXiv:1908.10728. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Brostean-Kaiser:2019xqc]
[15-88]
First measurements with prototype radio antennas for the IceTop detector array, Max Renschler (IceCube), PoS ICRC2019 (2020) 401, arXiv:1908.10565. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Renschler:2019djd]
[15-89]
Studying the Temporal Variation of the Cosmic-Ray Sun Shadow Using IceCube Data, Frederik Tenholt, Julia Becker Tjus, Paolo Desiati (IceCube), PoS ICRC2019 (2020) 437, arXiv:1908.10148. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Tenholt:2019geg]
[15-90]
The Scintillator Upgrade of IceTop: Performance of the prototype array, Matt Kauer, Thomas Huber, Delia Tosi, Chris Wendt (IceCube), PoS ICRC2019 (2020) 309, arXiv:1908.09860. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Kauer:2019len]
[15-91]
The POCAM as self-calibrating light source for the IceCube Upgrade, Christian Fruck, Felix Henningsen, Christian Spannfellner (IceCube), PoS ICRC2019 (2020) 908, arXiv:1908.09600. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Fruck:2019vam]
[15-92]
Measurement of the Diffuse Astrophysical Muon-Neutrino Spectrum with Ten Years of IceCube Data, Joeran Stettner (IceCube), PoS ICRC2019 (2020) 1017, arXiv:1908.09551. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Stettner:2019tok]
[15-93]
The IceCube Upgrade - Design and Science Goals, Aya Ishihara (IceCube), PoS ICRC2019 (2020) 1031, arXiv:1908.09441. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Ishihara:2019aao]
[15-94]
Application of Deep Neural Networks to Event Type Classification in IceCube, Maximilian Kronmueller, Theo Glauch (IceCube), PoS ICRC2019 (2020) 937, arXiv:1908.08763. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Kronmueller:2019jzh]
[15-95]
Search for Neutrinos from Populations of Optical Transients, Robert Stein (IceCube), PoS ICRC2019 (2020) 1016, arXiv:1908.08547. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Stein:2019ivm]
[15-96]
IceCube Search for Galactic Neutrino Sources based on HAWC Observations of the Galactic Plane, Ali Kheirandish, Joshua Wood, arXiv:1908.08546, 2019. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Kheirandish:2019zev]
[15-97]
Searches for steady neutrino emission from 3FHLblazars using eight years of IceCube data from theNorthern hemisphere, Matthias Huber (IceCube), PoS ICRC2019 (2020) 916, arXiv:1908.08458. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Huber:2019lrm]
[15-98]
Characterization of Two PMT Models for the IceCube Upgrade mDOM, D. van Eijk, J. Schneider, M. Unland (IceCube), PoS ICRC2019 (2020) 1022, arXiv:1908.08446. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[vanEijk:2019qvc]
[15-99]
First search for GeV neutrinos from bright gamma-ray solar flares using the IceCube Neutrino Observatory, Gwenhael de Wasseige (IceCube), PoS ICRC2019 (2020) 1075, arXiv:1908.08300. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[deWasseige:2019int]
[15-100]
Probing neutrino emission at GeV energies from compact binary mergers with IceCube, Gwenhael de Wasseige, Imre Bartos, Krijn de Vries, Erin O'Sullivan (IceCube), PoS ICRC2019 (2020) 865, arXiv:1908.08299. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[deWasseige:2019xcl]
[15-101]
Dark matter searches with the IceCube Upgrade, Sebastian Baur (IceCube), PoS ICRC2019 (2020) 506, arXiv:1908.08236. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Baur:2019jwm]
[15-102]
Cosmic Ray Spectrum and Composition from PeV to EeV from the IceCube Neutrino Observatory, Karen Andeen, Matthias Plum (IceCube), PoS ICRC2019 (2020) 172, arXiv:1908.08139. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Andeen:2019koi]
[15-103]
A search for IceCube events in the direction of ANITA neutrino candidates, Alex Pizzuto, Anastasia Barbano, Teresa Montaruli, Justin Vandenbroucke (IceCube), PoS ICRC2019 (2020) 981, arXiv:1908.08060. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Barbano:2019yrk]
[15-104]
An improved muon track reconstruction for IceCube, Federica Bradascio, Thorsten Glusenkamp (IceCube), PoS ICRC2019 (2020) 846, arXiv:1908.07961. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Bradascio:2019eub]
[15-105]
The camera system for the IceCube Upgrade, Woosik Kang, Christoph Tonnis, Carsten Rott (IceCube), PoS ICRC2019 (2020) 928, arXiv:1908.07734. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Kang:2019giw]
[15-106]
The SPICEcore Hole Camera System, Hrvoje Dujmovic, Minjin Jeong, Christoph Tonnis (IceCube), PoS ICRC2019 (2020) 926, arXiv:1908.07733. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Dujmovic:2019niy]
[15-107]
A Search for IceCube Neutrinos from the First 33 Detected Gravitational Wave Events, Raamis Hussain, Justin Vandenbroucke, Joshua Wood (IceCube), PoS ICRC2019 (2020) 918, arXiv:1908.07706. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Hussain:2019xzb]
[15-108]
Light diffusion in birefringent polycrystals and the IceCube ice anisotropy, Dmitry Chirkin, Martin Rongen (IceCube), PoS ICRC2019 (2020) 854, arXiv:1908.07608. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Chirkin:2019vyq]
[15-109]
Quest for new physics using astrophysical neutrino flavor in IceCube, Kareem Farrag (IceCube), PoS ICRC2019 (2020) 879, arXiv:1908.07602. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Arguelles:2019gpg]
[15-110]
A Three-dimensional Reconstruction of Cosmic Ray Events in IceCube, Xinhua Bai, Emily Dvorak, Dennis Soldin, Javier Gonzalez (IceCube), PoS ICRC2019 (2020) 244, arXiv:1908.07582. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Bai:2019awp]
[15-111]
ANTARES and IceCube combined search for neutrino point-like and extended sources in the Southern Sky, Giulia Illuminati, PoS ICRC2019 (2020) 919, arXiv:1908.07439. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Illuminati:2019oag]
[15-112]
Combined Search for Neutrinos from Dark Matter Annihilation in the Galactic Centre using ANTARES and IceCube, Nadege Iovine, Juan Antonio Aguilar Sanchez, Sebastian Baur, Sara Gozzini, Juan de Dios Zornoza Gomez (IceCube), PoS ICRC2019 (2020) 522, arXiv:1908.07300. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Iovine:2019rmd]
[15-113]
Search for dark matter annihilation in the center of the Earth with 8 years of IceCube data, Giovanni Renzi (IceCube), PoS ICRC2019 (2020) 541, arXiv:1908.07255. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[IceCube:2020wxa]
[15-114]
Eleven Year Search for Supernovae with the IceCube Neutrino Observatory, Robert Cross, Alexander Fritz, Spencer Griswold (IceCube), PoS ICRC2019 (2020) 889, arXiv:1908.07249. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Cross:2019jpb]
[15-115]
Search for dark matter with metastable mediators with the IceCube observatory, Christoph Tonnis (IceCube), PoS ICRC2019 (2020) 548, arXiv:1908.07243. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Tonnis:2019ppe]
[15-116]
Enabling a new detection channel for beyond standard model physics with in-situ measurements of ice luminescence, Anna Pollmann (IceCube), PoS ICRC2019 (2020) 983, arXiv:1908.07231. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Pollmann:2019bjp]
[15-117]
Low Energy Cosmic Ray Spectrum from 250 TeV to 10 PeV using IceTop, Ramesh Koirala, Thomas K. Gaisser (IceCube), PoS ICRC2019 (2020) 318, arXiv:1908.07143. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Koirala:2019vdc]
[15-118]
Measurement of the high-energy all-flavor neutrino-nucleon cross section with IceCube, Tianlu Yuan (IceCube), PoS ICRC2019 (2020) 1040, arXiv:1908.07027. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Yuan:2019wil]
[15-119]
IceTop as veto for IceCube: results, Delia Tosi, Hershal Pandya (IceCube), PoS ICRC2019 (2020) 445, arXiv:1908.07008. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Tosi:2019nau]
[15-120]
IceCube search for high-energy neutrinos produced in the precursor stages of gamma-ray bursts, Paul Coppin, Nick van Eijndhoven (IceCube), PoS ICRC2019 (2020) 859, arXiv:1908.06653. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Coppin:2019tpi]
[15-121]
Measurement of the Diffuse Muon Neutrino Flux using Starting Track Events in IceCube, Manuel Silva, Sarah Mancina (IceCube), PoS ICRC2019 (2020) 1010, arXiv:1908.06586. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Silva:2019fnq]
[15-122]
Cosmic ray composition study using machine learning at the IceCube Neutrino Observatory, Matthias Plum (IceCube), PoS ICRC2019 (2020) 394, arXiv:1908.06433. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Plum:2019lnm]
[15-123]
Measurement of the multi-TeV neutrino cross section with IceCube using Earth absorption, Sally Robertson (IceCube), PoS ICRC2019 (2020) 990, arXiv:1908.06123. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Robertson:2019wfw]
[15-124]
Ten years of All-sky Neutrino Point-Source Searches, Tessa Carver (IceCube), PoS ICRC2019 (2020) 851, arXiv:1908.05993. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Carver:2019jcd]
[15-125]
AMON: TeV Gamma and Neutrino Coincidence Alerts from HAWC and IceCube subthreshold data, Hugo Alberto Ayala Solares (HAWC,IceCube), PoS ICRC2019 (2020) 841, arXiv:1908.05990. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[AyalaSolares:2019rqp]
[15-126]
A Method for an Untriggered, Time-Dependent, Source-Stacking Search for Neutrino Flares, William Luszczak, Jim Braun, Albrecht Karle (IceCube), PoS ICRC2019 (2020) 950, arXiv:1908.05637. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Luszczak:2019jjy]
[15-127]
Searching for Time-Dependent Neutrino Emission from Blazars with IceCube, Erin O'Sullivan, Chad Finley (IceCube), PoS ICRC2019 (2020) 973, arXiv:1908.05526. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[OSullivan:2019rpq]
[15-128]
First Double Cascade Tau Neutrino Candidates in IceCube and a New Measurement of the Flavor Composition, Juliana Stachurska (IceCube), PoS ICRC2019 (2020) 1015, arXiv:1908.05506. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Stachurska:2019wfb]
[15-129]
Neutrinos from Primordial Black Hole Evaporation, Pranav Dave, Ignacio Taboada (IceCube), PoS ICRC2019 (2020) 863, arXiv:1908.05403. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Dave:2019epr]
[15-130]
A Catalog of Astrophysical Neutrino Candidates for IceCube, Chujie Chen, Charles Cardot (IceCube), PoS ICRC2019 (2020) 852, arXiv:1908.05290. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Chen:2019ome]
[15-131]
Searching for High-Energy Neutrino Emission from TeV Pulsar Wind Nebulae, Qinrui Liu, Ali Kheirandish (IceCube), PoS ICRC2019 (2020) 944, arXiv:1908.05279. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Liu:2019iga]
[15-132]
SkyLLH - A generalized Python-based tool for log-likelihood analyses in multi-messenger astronomy, Martin Wolf (IceCube), PoS ICRC2019 (2020) 1035, arXiv:1908.05181. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Wolf:2019cfm]
[15-133]
Search for high-energy neutrinos from AGN cores, Federica Bradascio (IceCube), PoS ICRC2019 (2020) 845, arXiv:1908.05170. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Bradascio:2019xdd]
[15-134]
Search for neutrino emission in IceCube archival data from the direction of IceCube alert events, Martina Karl (IceCube), PoS ICRC2019 (2020) 929, arXiv:1908.05162. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Karl:2019sfa]
[15-135]
Investigation of Ultra-Luminous Infrared Galaxies as Obscured High-Energy Neutrino Source Candidates, P. Correa, K. D. de Vries, N. van Eijndhoven (IceCube), PoS ICRC2019 (2020) 860, arXiv:1908.05137. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Correa:2019ljp]
[15-136]
Multi-messenger Gravitational-Wave + High-Energy Neutrino Searches with LIGO, Virgo, and IceCube, Azadeh Keivani, Doga Veske, Stefan Countryman, Imre Bartos, K. Rainer Corley, Zsuzsa Marka, Szabolcs Marka (IceCube), PoS ICRC2019 (2020) 930, arXiv:1908.04996. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Keivani:2019smf]
[15-137]
The Next Generation of IceCube Realtime Neutrino Alerts, Erik Blaufuss, Thomas Kintscher, Lu Lu, Chun Fai Tung (IceCube), PoS ICRC2019 (2020) 1021, arXiv:1908.04884. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Blaufuss:2019fgv]
[15-138]
Neutrino source searches and a realtime neutrino alert stream in the southern sky with IceCube starting tracks, Sarah Mancina, Manuel Silva (IceCube), PoS ICRC2019 (2019) 954, arXiv:1908.04869. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Mancina:2019hsp]
[15-139]
Searching for neutrino emission from hard X-ray sources with IceCube, Marcos Santander (IceCube), PoS ICRC2019 (2020) 1002, arXiv:1908.04862. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Santander:2019yeo]
[15-140]
Correlation of IceCube neutrinos with the 2MASS Redshift Survey, Stephen Sclafani, Naoko Kurahashi Neilson (IceCube), PoS ICRC2019 (2020) 1006, arXiv:1908.04857. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Sclafani:2019erv]
[15-141]
The IceCube Neutrino Observatory - Contributions to the 36th International Cosmic Ray Conference (ICRC2019), M. G. Aartsen et al. (IceCube), arXiv:1907.11699, 2019.
[IceCube:2019xdf]
[15-142]
Characterization of the Astrophysical Diffuse Neutrino Flux with IceCube High-Energy Starting Events, Austin Schneider (IceCube), PoS ICRC2019 (2020) 1004, arXiv:1907.11266. 36th International Cosmic Ray Conference (ICRC 2019), Madison, WI, U.S.A.
[Schneider:2019ayi]
[15-143]
Highlights from the 7 year High Energy Starting Event sample in Icecube, Kareem Farrag (IceCube), arXiv:1906.09623, 2019. Eighth Meeting on CPT and Lorentz Symmetry, Bloomington, Indiana, May 12-16, 2019.
[Farrag:2019jlo]
[15-144]
IceCube High Energy Starting Events at 7.5 Years - New Measurements of Flux and Flavor, Juliana Stachurska (IceCube), EPJ Web Conf. 207 (2019) 02005, arXiv:1905.04237. VLVNT2018.
[Stachurska:2019srh]
[15-145]
IceCube Sterile Neutrino Searches, B.J.P. Jones (IceCube), EPJ Web Conf. 207 (2019) 04005, arXiv:1902.06185. VLVNT2018.
[Jones:2019nix]
[15-146]
The Anisotropies and Origins of Ultrahigh Energy Cosmic Rays, Francis Halzen, arXiv:1810.02484, 2018. CIPANP 2018.
[Halzen:2018uas]
[15-147]
Astrophysical Neutrinos with IceCube, Spencer R. Klein (IceCube), arXiv:1809.07873, 2018. CIPANP 2018.
[Klein:2018fnn]
[15-148]
TeV-PeV neutrino-nucleon cross section measurement with 5 years of IceCube data, Yiqian Xu (IceCube), PoS DIS2018 (2018) 019, arXiv:1809.06782. DIS2018, Kobe, 16-20 April 2018.
[Xu:2018zyc]
[15-149]
High-energy neutrino interaction physics with IceCube, Spencer R. Klein (IceCube), EPJ Web Conf. 208 (2019) 09001, arXiv:1809.04150. Intl. Symp. on Very High Energy Cosmic Ray Interactions (ISVHECRI).
[Klein:2018waq]
[15-150]
The IceCube Neutrino Observatory, the Pierre Auger Observatory and the Telescope Array: Joint Contribution to the 35th International Cosmic Ray Conference (ICRC 2017), IceCube, Pierre Auger, Telescope Array, arXiv:1801.01854, 2018. ICRC 2017.
[Veberic:2018kwc]
[15-151]
The IceCube Neutrino Observatory - Contributions to ICRC 2017 Part VI: IceCube-Gen2, the Next Generation Neutrino Observatory, M. G. Aartsen et al. (IceCube-Gen2), arXiv:1710.01207, 2017.
[Ackermann:2017pja]
[15-152]
The IceCube Neutrino Observatory - Contributions to ICRC 2017 Part V: Solar flares, Supernovae, Event reconstruction, Education $\text{\&}$ Outreach, M. G. Aartsen et al. (IceCube), arXiv:1710.01201, 2017.
[Ackermann:2017jxi]
[15-153]
The IceCube Neutrino Observatory - Contributions to ICRC 2017 Part IV: Searches for Beyond the Standard Model Physics, M. G. Aartsen et al. (IceCube), arXiv:1710.01197, 2017.
[IceCube:2017oza]
[15-154]
The IceCube Neutrino Observatory - Contributions to ICRC 2017 Part III: Cosmic Rays, M. G. Aartsen et al. (IceCube), arXiv:1710.01194, 2017.
[IceCube:2017qmt]
[15-155]
The IceCube Neutrino Observatory - Contributions to ICRC 2017 Part II: Properties of the Atmospheric and Astrophysical Neutrino Flux, M. G. Aartsen et al. (IceCube), arXiv:1710.01191, 2017.
[IceCube:2017zho]
[15-156]
The IceCube Neutrino Observatory - Contributions to ICRC 2017 Part I: Searches for the Sources of Astrophysical Neutrinos, M. G. Aartsen et al. (IceCube), arXiv:1710.01179, 2017.
[IceCube:2017qeh]
[15-157]
Combined Analysis of Cosmic-Ray Anisotropy with IceCube and HAWC, IceCube, HAWC, PoS ICRC2017 (2018) 539, arXiv:1708.03005. 35th International Cosmic Ray Conference (ICRC2017), Bexco, Busan, Korea.
[HAWC:2017rws]
[15-158]
Atmospheric neutrinos and new physics, Nuria Rius (IceCube), arXiv:1705.09140, 2017. Talk presented at NuPhys2016 (London, 12-14 December 2016).
[Rius:2017hsc]
[15-159]
Neutrino Astronomy with IceCube and Beyond, Kevin J. Meagher (IceCube), IAU Symp. 324 (2016) 322-329, arXiv:1705.00383. NuPhys2016 (London, 12-14 December 2016).
[Meagher:2016eeq]
[15-160]
Improved Detection of Supernovae with the IceCube Observatory, Lutz Kopke (IceCube), J.Phys.Conf.Ser. 1029 (2018) 012001, arXiv:1704.03823. 8th international symposium on large TPCs for low-energy rare event detection, Paris, Dec. 5-7, 2016.
[Kopke:2017req]
[15-161]
Exploring the Universe with Neutrinos: Recent Results from IceCube, Donglian Xu (IceCube), Nucl.Part.Phys.Proc. 287-288 (2017) 139-142, arXiv:1702.05244. 14th International Workshop on Tau Lepton Physics.
[Xu:2017iku]
[15-162]
Search for Astrophysical Tau Neutrinos with IceCube, Donglian Xu (IceCube), PoS ICHEP2016 (2016) 452, arXiv:1702.05238. 38th International Conference on High Energy Physics.
[Xu:2016zxj]
[15-163]
Constraints on atmospheric charmed-meson production from IceCube, Tomasz Palczewski (IceCube), EPJ Web Conf. 130 (2016) 05015, arXiv:1611.00816. Meson 2016.
[Palczewski:2016ucy]
[15-164]
Luminescence of water or ice as a new detection method for magnetic monopoles, Anna Obertacke Pollmann (IceCube), EPJ Web Conf. 164 (2017) 07019, arXiv:1610.06397. 5th International Conference on New Frontiers in Physics (ICNFP '16).
[ObertackePollmann:2016uvi]
[15-165]
Search for sharp neutrino features from dark matter decay, Chaimae El Aisati (IceCube), arXiv:1606.00754, 2016. 51st Rencontres de Moriond, EW session.
[ElAisati:2016dur]
[15-166]
On the Study of Solar Flares with Neutrino Observatories, G. de Wasseige (IceCube), arXiv:1606.00681, 2016. Moriond EW 2016.
[deWasseige:2016jvi]
[15-167]
Neutrino Mass Ordering Studies with PINGU and IceCube/DeepCore, Steven Wren, arXiv:1604.08807, 2016. NuPhys2015 (London, 16-18 December 2015).
[Wren:2016phy]
[15-168]
From DeepCore to PINGU: Measuring atmospheric neutrino oscillations at the South Pole, J. P. Yanez (IceCube-Gen2), EPJ Web Conf. 116 (2016) 11009, arXiv:1601.05245. VLVnT Workshop 2015.
[Yanez:2016ojt]
[15-169]
Neutrino Physics and Astrophysics with IceCube, Teresa Montaruli (IceCube), Nucl.Part.Phys.Proc. 279-281 (2016) 23-30, arXiv:1512.07978. CRIS2015, Gallipoli, Italy.
[Montaruli:2015six]
[15-170]
ICRC 2015 proceedings: First combined search for neutrino point-sources in the Southern Sky with the ANTARES and IceCube neutrino telescopes, ANTARES, IceCube (IceCube, ANTARES), arXiv:1511.05025, 2015. 34th International Cosmic Ray Conference, 30 July - 6 August 2015 (The Hague, The Netherlands).
[ANTARES:2015cex]
[15-171]
The IceCube Neutrino Observatory, the Pierre Auger Observatory and the Telescope Array: Joint Contribution to the 34th International Cosmic Ray Conference (ICRC 2015), M.G. Aartsen et al. (IceCube), arXiv:1511.02109, 2015. 34th International Cosmic Ray Conference, 30 July - 6 August 2015, The Hague, The Netherlands.
[IceCube:2015xib]
[15-172]
IceCube-Gen2 - The Next Generation Neutrino Observatory at the South Pole: Contributions to ICRC 2015, M. G. Aartsen et al. (IceCube-Gen2), arXiv:1510.05228, 2015. 34th International Cosmic Ray Conference, The Hague 2015.
[IceCube:2015uxl]
[15-173]
The IceCube Neutrino Observatory - Contributions to ICRC 2015 Part V: Neutrino Oscillations and Supernova Searches, M. G. Aartsen et al. (IceCube), arXiv:1510.05227, 2015. 34th International Cosmic Ray Conference, The Hague 2015.
[IceCube:2015ucz]
[15-174]
The IceCube Neutrino Observatory - Contributions to ICRC 2015 Part IV: Searches for Dark Matter and Exotic Particles, M. G. Aartsen et al. (IceCube), arXiv:1510.05226, 2015. 34th International Cosmic Ray Conference, The Hague 2015.
[IceCube:2015hle]
[15-175]
The IceCube Neutrino Observatory - Contributions to ICRC 2015 Part III: Cosmic Rays, M. G. Aartsen et al. (IceCube), arXiv:1510.05225, 2015. 34th International Cosmic Ray Conference, The Hague 2015.
[IceCube:2015qec]
[15-176]
The IceCube Neutrino Observatory - Contributions to ICRC 2015 Part II: Atmospheric and Astrophysical Diffuse Neutrino Searches of All Flavors, M. G. Aartsen et al. (IceCube), arXiv:1510.05223, 2015. 34th International Cosmic Ray Conference, The Hague 2015.
[IceCube:2015fuw]
[15-177]
The IceCube Neutrino Observatory - Contributions to ICRC 2015 Part I: Point Source Searches, M. G. Aartsen et al. (IceCube), arXiv:1510.05222, 2015. 34th International Cosmic Ray Conference, The Hague 2015.
[IceCube:2015lny]
[15-178]
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Searching for TeV gamma-ray emission associated with IceCube high-energy neutrinos using VERITAS, M. Santander (VERITAS and IceCube), PoS ICRC2015 (2016) 785, arXiv:1509.00517. International Cosmic Ray Conference 2015 (ICRC2015), The Hague, Netherlands.
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IceCube at the Threshold, Thomas K. Gaisser (IceCube), arXiv:1507.07871, 2015. Inauguration of HAWC, Puebla, March 19, 2015.
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Analysis of the cumulative neutrino flux from Fermi-LAT blazar populations using 3 years of IceCube data, Thorsten Glusenkamp (IceCube), EPJ Web Conf. 121 (2016) 05006, arXiv:1502.03104. RICAP-14, Noto, Sicily, Sept. 30th - Oct. 3rd 2014.
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Calibrating the photon detection efficiency in IceCube, Delia Tosi (Christopher Wendt for the IceCube), PoS TIPP2014 (2014) 157, arXiv:1502.03102. Technology and Instrumentation in Particle Physics 2014 (TIPP 2014).
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Measuring the Neutrino Mass Hierarchy with Atmospheric Neutrinos, D. F. Cowen et al. (IceCube/PINGU), arXiv:1409.5755, 2014. Fundamental Symmetries, Neutrinos, Neutrons and related Nuclear Astrophysics Long-Range Plan Town Meeting, Sept. 28-29, 2014, Chicago, IL.
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The Birth of Neutrino Astronomy, Naoko Kurahashi (IceCube), arXiv:1402.3627, 2014. 10th International Symposium on Cosmology and Particle Astrophysics (CosPA2013).
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IceCube - status and recent results, A. Karle (IceCube), arXiv:1401.4496, 2014. XVth Workshop on Neutrino Telescopes, held in Venice, March 2013.
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Recent Highlights from IceCube, IceCube (Spencer R. Klein), Braz. J. Phys. 44 (2014) 540-549, arXiv:1311.6519. 2013 Intl. Cosmic Ray Conf.
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The Precision IceCube Next Generation Upgrade, Dawn Williams (IceCube, PINGU), arXiv:1310.1287, 2013. DPF 2013 Meeting of the American Physical Society Division of Particles and Fields, Santa Cruz, California, August 13-17, 2013.
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The IceCube Neutrino Observatory Part VI: Ice Properties, Reconstruction and Future Developments, M. G. Aartsen et al. (IceCube), arXiv:1309.7010, 2013. 33nd International Cosmic Ray Conference, Rio de Janeiro 2013.
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The IceCube Neutrino Observatory Part V: Neutrino Oscillations and Supernova Searches, M. G. Aartsen et al. (IceCube), arXiv:1309.7008, 2013. 33nd International Cosmic Ray Conference, Rio de Janeiro 2013.
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The IceCube Neutrino Observatory Part IV: Searches for Dark Matter and Exotic Particles, M. G. Aartsen et al. (IceCube), arXiv:1309.7007, 2013. 33nd International Cosmic Ray Conference, Rio de Janeiro 2013.
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The IceCube Neutrino Observatory Part III: Cosmic Rays, M. G. Aartsen et al. (IceCube), arXiv:1309.7006, 2013. 33nd International Cosmic Ray Conference, Rio de Janeiro 2013.
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The IceCube Neutrino Observatory Part II: Atmospheric and Diffuse UHE Neutrino Searches of All Flavors, M. G. Aartsen et al. (IceCube), arXiv:1309.7003, 2013. 33nd International Cosmic Ray Conference, Rio de Janeiro 2013.
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The IceCube Neutrino Observatory Part I: Point Source Searches, M. G. Aartsen et al. (IceCube), arXiv:1309.6979, 2013. 33nd International Cosmic Ray Conference, Rio de Janeiro 2013.
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Observation of TeV-PeV cosmic ray anisotropy with IceCube, IceTop and AMANDA, Paolo Desiati (IceCube), Nucl.Instrum.Meth. A742 (2014) 199-202, arXiv:1308.0246. RICAP 2013 Conference, Roma, Italy, May 22 - 24, 2013.
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PINGU Sensitivity to the Neutrino Mass Hierarchy, M. G. Aartsen et al. (IceCube), arXiv:1306.5846, 2013. Snowmass 2013.
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Neutrino searches with the IceCube telescope, Juan A. Aguilar (IceCube), Nucl. Phys. Proc. Suppl. 237-238 (2013) 250-252, arXiv:1301.6504. NOW 2012.
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Atmospheric Neutrino Oscillations in IceCube, Andreas Gros (IceCube), Nucl. Phys.B, Proc.Suppl.237-238 2013 (2013) 272-274, arXiv:1301.4339. NOW 2012.
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Prospects for a radio air-shower detector at South Pole, Sebastian Boser (ARA and IceCube), AIP Conf.Proc. 1535 (2013) 116, arXiv:1211.0026. ARENA 2012.
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IceCube Observatory: Neutrinos and the Origin of Cosmic Rays, Paolo Desiati (IceCube), arXiv:1210.7703, 2012. XIV Vulcano Workshop, Vulcano (ME), Italy, May 28 - June 2, 2012.
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Neutrino Astronomy with the IceCube Observatory, Alexander Kappes (IceCube), J. Phys. Conf. Ser. 409 (2013) 012014, arXiv:1209.5855. 23rd European Cosmic Ray Symposium, Moscow, Russia, 2012.
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Cosmic Ray Physics with the IceCube Observatory, Hermann Kolanoski (IceCube), J. Phys. Conf. Ser. 409 (2013) 012006, arXiv:1209.5610. 3rd European Cosmic Ray Symposium, Moscow, Russia, 2012.
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Detection of Cascades induced by Atmospheric Neutrinos in the 79-string IceCube Detector, Chang Hyon Ha (IceCube), AIP Conf.Proc. 1560 (2013) 347-349, arXiv:1209.0698. CIPANP 2012.
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Recent results from IceCube on neutrinos and cosmic rays, Sebastian Boser (IceCube), arXiv:1205.6405, 2012. XLVII Rencontres de Moriond, 'EW Interactions and Unified Theories'.
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Anisotropy of TeV and PeV cosmic rays with IceCube and IceTop, Marcos Santander (IceCube), Nucl.Instrum.Meth. A725 (2013) 85-88, arXiv:1205.3969. 2011 Very Large Volume Neutrino Telescopes Conference.
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Particle Physics in Ice with IceCube DeepCore, T. DeYoung (IceCube), Nucl. Instrum. Meth. A692 (2012) 180-183, arXiv:1112.1053. 3rd RICAP.
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IceCube - Astrophysics and Astroparticle Physics at the South Pole, R. Abbasi et al. (IceCube), arXiv:1111.5188, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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The Shadow of the Moon in IceCube, L. Gladstone (IceCube), arXiv:1111.2969, 2011. XLVI Rencontres de Moriond, International Conference on Electroweak Interactions and Unified Theories, La Thuile, Italy, Mar. 20-27, 2011.
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The IceCube Neutrino Observatory V: Future Developments, R. Abbasi et al. (IceCube), arXiv:1111.2742, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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The IceCube Neutrino Observatory I: Point Source Searches, R. Abbasi et al. (IceCube), arXiv:1111.2741, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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The IceCube Neutrino Observatory IV: Searches for Dark Matter and Exotic Particles, R. Abbasi et al. (IceCube), arXiv:1111.2738, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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The IceCube Neutrino Observatory II: All Sky Searches: Atmospheric, Diffuse and EHE, R. Abbasi et al. (IceCube), arXiv:1111.2736, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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The IceCube Neutrino Observatory III: Cosmic Rays, R. Abbasi et al. (IceCube), arXiv:1111.2735, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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The IceCube Neutrino Observatory VI: Neutrino Oscillations, Supernova Searches, Ice Properties, R. Abbasi et al. (IceCube), arXiv:1111.2731, 2011. 32nd International Cosmic Ray Conference, Beijing 2011.
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Search for transient neutrino sources with IceCube, A. Franckowiak (IceCube), arXiv:1111.0335, 2011. 2011 Fermi Symposium - eConf C110509.
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Getting Science Beyond the Research Community: Examples of Education and Outreach from the IceCube Project, James Madsen (IceCube), arXiv:1110.1600, 2011.
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IceCube: Status and Results, Thomas K. Gaisser (IceCube), arXiv:1108.1838, 2011. XIV International Workshop on Neutrino Telescopes, Venice, March, 2011.
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IceCube as a discovery observatory for physics beyond the standard model, K. Helbing (IceCube), arXiv:1107.5227, 2011. 46th Rencontres de Moriond.
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Cosmic-ray physics with IceCube, Thomas K. Gaisser (IceCube), Adv. Space Res. 51 (2013) 242-246, arXiv:1107.1690. COSPAR, Bremen Germany, 2010.
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Supernova Neutrino Detection with IceCube, Lutz Kopke (IceCube), J. Phys. Conf. Ser. 309 (2011) 012029, arXiv:1106.6225. 5th Symposium on Large TPCs for Low Energy Rare Events and Workshop on Neutrinos from Supernovae, Paris, Dec. 16-17, 2010.
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Multi-Messenger Astrophysics with IceCube, M. Ribordy et al. (IceCube), Nuovo Cim. C034N3 (2011) 113-121, arXiv:1101.1187. SciNeGHE 2010, Sept. 8-10, Trieste.
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High Energy Neutrino Astronomy: IceCube 22 and 40 strings, E. Resconi et al. (IceCube), Nucl. Phys. Proc. Suppl. 229-232 (2012) 267-273, arXiv:1012.0415. XXIV International Conference on Neutrino Physics and Astrophysics 2010.
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Dark matter searches with IceCube, Carlos de los Heros (IceCube), PoS IDM2010 (2011) 064, arXiv:1012.0184. Identification of Dark Matter 2010, July 26 - 30 2010, University of Montpellier 2, Montpellier, France.
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Observation of the anisotropy in arrival direction of Cosmic Rays with IceCube, S. Toscano et al. (IceCube), Nucl.Phys.Proc.Suppl. 212-213 (2011) 201-206, arXiv:1011.5428.
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Search for a neutrino flux from LS I +61 303 based on a time dependent model with IceCube, Levent Demirors et al. (IceCube), Nucl. Phys. Proc. Suppl. 229-232 (2012) 532, arXiv:1011.5102. Neutrino 2010.
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The IceCube neutrino observatory: Status and initial results, Timo Karg et al. (IceCube), Astrophys. Space Sci. Trans. 7 (2011) 157-162, arXiv:1011.5027. ECRS 2010, Turku, Finland, August 2010.
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The IceTop experiment in 2010, Todor Stanev (IceCube), Italian Phys.Soc.Proc. 103 (2011) 663-668, arXiv:1011.1879. Vulcano 2010.
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Directional correlations between UHECRs and neutrinos observed with IceCube, Robert Lauer (IceCube), Astrophys. Space Sci. Trans. 7 (2011) 201-205, arXiv:1011.1093. ECRS 2010.
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Search for neutrino point sources with the IceCube Neutrino Observatory, Juan A. Aguilar (IceCube), arXiv:1010.6263, 2010. Vulcano Workshop 2010.
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IceCube's In-Ice Radio Extension: Status and Results, E. Cheng et al. (H. Landsman for the IceCube), Nucl. Instrum. Meth. A662 (2012) S54, arXiv:1010.3949. Acoustic and Radio EeV Neutrino detection Activities (ARENA) 2010.
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Acoustic transient event reconstruction and sensitivity studies with the South Pole Acoustic Test Setup, Jens Berdermann (IceCube), Nucl. Instrum. Meth. A662 (2012) S46-S49, arXiv:1010.2841. ARENA 2010.
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IceCube: Neutrino Messages from GRBs, A. Kappes (IceCube), AIP Conf. Proc. 1279 (2010) 234-241, arXiv:1007.4629. Deciphering the Ancient Universe with Gamma-Ray Bursts, Kyoto, April 2010.
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Neutrino Astrophysics and Galactic Cosmic Ray Anisotropy in IceCube, Paolo Desiati (IceCube), arXiv:1007.2621, 2010. Beyond the Standard Model of Particle Physics, Cosmology and Astrophysics (Beyond 2010), Cape Town, South Africa (2010).
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Searching for High Energy Diffuse Astrophysical Muon Neutrinos with IceCube, Sean Grullon, arXiv:1005.4962, 2010. 2010 Lake Louise Winter Institute.
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IceCube, A. Karle (IceCube), arXiv:1003.5715, 2010. 31st ICRC, Lodz, Poland, July 2009.
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IceCube and KM3NeT: Lessons and Relations, Christian Spiering, Nucl. Instrum. Meth. A626-627 (2011) S48-S52, arXiv:1003.2590. 2009 VLVNT Meeting, Athens, Greece.
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IceCube: physics, status, and future, Klas Hultqvist, IceCube, Nucl. Instrum. Meth. A626-627 (2011) S6-S12, arXiv:1003.2300. 4th International Workshop on Very Large Volume Neutrino Telescopes.
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Search for Dark Matter from the Galactic Halo with IceCube, Carsten Rott (IceCube), arXiv:0912.5183, 2009. CCAPP Symposium 2009, Columbus OH, USA, October 2009.
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Recent Results from IceCube and AMANDA, T. DeYoung (IceCube), arXiv:0910.3644, 2009. DPF-2009, Detroit, MI, July 2009, eConf C090726.
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IceCube: The Rationale for Kilometer-Scale Neutrino Detectors, Francis Halzen, arXiv:0910.0436, 2009. 21st Rencontres de Blois, 'Windows on the Universe'.
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A Search For Atmospheric Neutrino-Induced Cascades with IceCube, Michelangelo D'Agostino (IceCube), arXiv:0910.0215, 2009. 31st ICRC, Lodz 2009.
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First search for extraterrestrial neutrino-induced cascades with IceCube, J. Kiryluk (IceCube), arXiv:0909.0989, 2009. 31st International Cosmic Ray Conference (ICRC 2009) proceedings, Lodz, Poland, 7-15 2009.
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Direct Measurement of the Atmospheric Muon Energy Spectrum with IceCube, Patrick Berghaus (IceCube), arXiv:0909.0679, 2009. 31st ICRC, Lodz, Poland, July 2009.
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Optical follow-up of high-energy neutrinos detected by IceCube, A. Franckowiak et al. (IceCube), arXiv:0909.0631, 2009. 31st ICRC, Lodz, Poland, July 2009.
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Search for neutrino flares from point sources with IceCube, J. L. Bazo Alba, E. Bernardini, R. Lauer (IceCube), arXiv:0908.4209, 2009. 31st ICRC, Lodz, Poland, July 2009.
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Acoustic detection of high energy neutrinos in ice: Status and results from the South Pole Acoustic Test Setup, Freija Descamps (IceCube), arXiv:0908.3251, 2009. 31st International Cosmic Ray Conference.
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Supernova Search with the AMANDA / IceCube Detectors, Thomas Kowarik, Timo Griesel, Alexander Piegsa (Icecube), arXiv:0908.0441, 2009. 31st ICRC, Lodz, Poland, July 2009.
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Sensor development and calibration for acoustic neutrino detection in ice, Timo Karg, Martin Bissok, Karim Laihem, Benjamin Semburg, Delia Tosi (IceCube), arXiv:0907.3561, 2009. 31st International Cosmic Ray Conference.
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Physics Capabilities of the IceCube DeepCore Detector, Christopher Wiebusch (IceCube), arXiv:0907.2263, 2009. 31st ICRC, Lodz, Poland, July 2009.
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Search for the Kaluza-Klein Dark Matter with the AMANDA/IceCube Detectors, Matthias Danninger, Kahae Han, for the IceCube Collaboration (IceCube), arXiv:0906.3969, 2009. ICRC (2009).
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IceCube: Neutrinos Associated with Cosmic Rays, Francis Halzen, AIP Conf. Proc. 1182 (2009) 14-21, arXiv:0906.3470. CIPANP 09, Torrey Pines, San Diego, CA.
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Muons in IceCube, P. Berghaus (IceCube), Nucl. Phys. Proc. Suppl. 196 (2009) 261-266, arXiv:0902.0021. XV International Symposium on Very High Energy Cosmic Ray Interactions (ISVHECRI 2008), Paris, France, September 1-6, 2008.
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IceCube Science, Francis Halzen, J. Phys. Conf. Ser. 171 (2009) 012013, arXiv:0901.4722. Discrete 08, Valencia, Spain.
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IceCube3-a new window on the Universe, Thomas K. Gaisser, Denis Robertson (IceCube), AIP Conf. Proc. 1123 (2009) 177-189, arXiv:0901.4294. 3rd Latin American School on Cosmic Rays, Arequipa, Peru, September, 2008.
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Neutrino Astronomy in the Ice, Teresa Montaruli, Nucl. Phys. Proc. Suppl. 188 (2009) 239-244, arXiv:0901.2664. NOW 2008 Conference, Conca Specchiulla, Lecce, Italy, Sept. 2008.
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Neutrino Astronomy with the IceCube Observatory and Implications for Astroparticle Physics, Paolo Desiati et al. (IceCube), arXiv:0812.4004, 2008. Vulcano Workshop 2008, Vulcano (ME), Italy (2008).
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[15-284]
Particle astrophysics from the cold: Results and perspectives of IceCube, C. de los Heros (IceCube), arXiv:0802.0147, 2008. First AFI Symposium, From the Vacuum to the Universe, Innsbruck, 19-20/10/2007.
[delosHeros:2008rbw]
[15-285]
Contributions to The 10th International Conference on Topics in Astroparticle and Underground Physics (TAUP) 2007, Sendai, Japan, Sep. 11-15, 2007, R. Abbasi et al. (IceCube), arXiv:0712.3524, 2007.
[Collaboration:2007rk]
[15-286]
The IceCube Collaboration: contributions to the 30th International Cosmic Ray Conference (ICRC 2007), M. Ackermann et al. (IceCube), arXiv:0711.0353, 2007.
[Ahrens:2007zzc]
[15-287]
A radio air shower surface detector as an extension for IceCube and IceTop, J. Auffenberg et al., Nucl. Instrum. Meth. A604 (2009) S53-S56, arXiv:0708.3331. 30th International Cosmic Ray Conference.
[Auffenberg:2007fx]
[15-288]
Icecube, the World's Largest Dark Matter Detector, Hagar Landsman (IceCube), arXiv:astro-ph/0612239, 2006. IDM 2006.
[Landsman:2006mc]
[15-289]
Neutrino astronomy with IceCube and AMANDA, Gary C. Hill et al. (IceCube), Nucl. Phys. Proc. Suppl. 221 (2011) 103-109, arXiv:astro-ph/0611773. Neutrino 2006, Santa Fe, June 2006.
[Hill:2006mk]
[15-290]
IceCube: Performance, Status, and Future, Carsten Rott et al. (IceCube), Nucl. Phys. B, Proc. Suppl. 175-176 (2008) 409-414, arXiv:astro-ph/0611726. XIV International Symposium on Very High Energy Cosmic Ray Interactions (ISVHECRI 2006) in Weihai, China, August 15-22, 2006.
[Rott:2006jm]
[15-291]
IceCube : Toward a km^3 Neutrino Telescope, Paolo Desiati et al. (IceCube), arXiv:astro-ph/0611603, 2006. ECRS 2006, Lisbon, Portugal (2006).
[Desiati:2006qc]
[15-292]
Contributions to 2nd TeV Particle Astrophysics Conference (TeV PA II) Madison Wisconsin - 28-31 August 2006, IceCube (IceCube), J. Phys. Conf. Ser. (2006), arXiv:astro-ph/0611597.
[IceCube:2006nzk]
[15-293]
IceCube: The state of the art, Teresa Montaruli (IceCube), arXiv:astro-ph/0608140, 2006. Vulcano 2006, in Frontier Objects in Astrophysics and Particle Physics.
[Montaruli:2006eg]
[15-294]
Status of IceCube in 2005, Albrecht Karle et al. (IceCube), Nucl. Instrum. Meth. A567 (2006) 438-443, arXiv:astro-ph/0608139. VLVnT2, Oct. 2005, Catania, Italy.
[Karle:2006ef]
[15-295]
Neutrino Astronomy at the South Pole, P.A. Toale et al. (IceCube), arXiv:astro-ph/0607003, 2006. 2006 Rencontres de Moriond, Electroweak Interactions.
[Toale:2006ti]
[15-296]
Neutrino detectors in ice: Results and perspectives, Adam Bouchta (IceCube), Frascati Phys.Ser. 42 (2006) 87-101, arXiv:astro-ph/0606235. 20th Rencontres de Physique de La Vallee d'Aoste: Results and Perspective in Particle Physics, La Thuile, Aosta Valley, Italy, 5-12 Mar 2006.
[Bouchta:2006rt]
[15-297]
From AMANDA to IceCube, Per Olof Hulth et al. (IceCube), arXiv:astro-ph/0604374, 2006. NO-VE 2006, Neutrino Oscillations in Venice, Italy, February 7-10, 2006.
[Hulth:2006ny]
[15-298]
First Results from IceCube, Spencer R. Klein et al. (IceCube), AIP Conf. Proc. 842 (2006) 971-976, arXiv:astro-ph/0601269. PANIC05, Oct. 24-28, 2005, Santa Fe, NM.
[Klein:2006in]
[15-299]
Simulation of a Hybrid Optical/Radio/Acoustic Extension to IceCube for EeV Neutrino Detection, D. Besson et al. (IceCube), Int. J. Mod. Phys. A21S1 (2006) 259-264, arXiv:astro-ph/0512604. 29th ICRC, Pune, India.
[Besson:2005re]
[15-300]
The IceCube collaboration: Contributions to the 29th international cosmic ray conference (ICRC 2005), Pune, India, Aug. 2005, IceCube (IceCube), arXiv:astro-ph/0509330, 2005.
[Besson:2005qs]
[15-301]
From AMANDA to IceCube, Mathieu Ribordy (IceCube), Phys. Atom. Nucl. 69 (2006) 1899-1907, arXiv:astro-ph/0509322. 5th International Conference on Non-accelerator New Physics (NANP 05), Dubna, Russia, 20-25 June 2005.
[IceCube:2005hmk]
[15-302]
IceTop status in 2004, Todor Stanev, Ralf Ulrich (IceCube), Nucl. Phys. Proc. Suppl. 145 (2005) 327, arXiv:astro-ph/0501046. NOW 2004: Neutrino Oscillation Workshop, Conca Specchiulla, Otranto, Italy, 11-17 Sep 2004.
[Stanev:2005nt]
[15-303]
IceCube: The Cubic Kilometer Neutrino Telescope at the South Pole, A.R. Fazely (The IceCube), arXiv:astro-ph/0406125, 2004. Coral Gables Conference 2003.
[Fazely:2004jt]
[15-304]
Design and Status of IceCube, Martin Kestel (IceCube), Nucl. Instrum. Meth. A535 (2004) 139, arXiv:astro-ph/0405008. Xth Vienna Conference on Instrumentation 2004.
[Kestel:2004ep]
[15-305]
The IceCube Project, Christian Spiering (IceCube), arXiv:astro-ph/0404090, 2004. VLVNT Workshop, Amsterdam, Oct 5-8, 2003.
[IceCube:2004dcm]
[15-306]
High-Energy Neutrino Astronomy: from AMANDA to Icecube, F. Halzen, IAU Symp. 2 (2003) 44, arXiv:astro-ph/0311004. IAU XXV General Assembly, Sydney, Australia, July 2003.
[Halzen:2003ve]
[15-307]
IceCube - the next generation neutrino telescope at the South Pole, A. Karle (IceCube), Nucl. Phys. Proc. Suppl. 118 (2003) 388, arXiv:astro-ph/0209556. Proceedings of the XXth International Conference on Neutrino Physics and Astrophysics, Munich 2002.
[IceCube:2002eys]
[15-308]
10**20-eV cosmic ray and particle physics with IceCube, J. Alvarez-Muniz, F. Halzen, AIP Conf. Proc. 579 (2001) 305-314, arXiv:astro-ph/0102106. Talk given at 1st International Workshop on Radio Detection of High-Energy Particles (RADHEP 2000), Los Angeles, California, 16-18 Nov 2000.
[Alvarez-Muniz:2001awt]

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