Majorana (76Ge)

Other Web pages: INSPIRE

Filter this page

(Note: The process can take some time.)

EXPAND ALL
COMPRESS ALL

References

1 - Neutrinoless Double Beta Decay

[1-1]
Final Result of the MAJORANA DEMONSTRATOR's Search for Neutrinoless Double-$\beta$ Decay in $^{76}$Ge, I. J. Arnquist et al., Phys.Rev.Lett. 130 (2023) 062501, arXiv:2207.07638.
[Majorana:2022udl]
[1-2]
A Search for Neutrinoless Double-Beta Decay in $^{76}$Ge with 26 kg-yr of Exposure from the MAJORANA DEMONSTRATOR, S.I. Alvis et al., Phys.Rev. C100 (2019) 025501, arXiv:1902.02299.
[Majorana:2019nbd]
[1-3]
Search for Zero-Neutrino Double Beta Decay in 76Ge with the Majorana Demonstrator, C.E. Aalseth et al., Phys.Rev.Lett. 120 (2018) 132502, arXiv:1710.11608.
[Majorana:2017csj]

2 - Physics

[2-1]
Constraints on the decay of $^{180m}$Ta, I. J. Arnquist et al., Phys.Rev.Lett. 131 (2023) 152501, arXiv:2306.01965.
[Majorana:2023ecz]
[2-2]
Exotic dark matter search with the Majorana Demonstrator, I. J. Arnquist et al., Phys.Rev.Lett. 132 (2024) 041001, arXiv:2206.10638.
[Majorana:2022gtu]
[2-3]
A Search for Spontaneous Radiation from Wavefunction Collapse in the Majorana Demonstrator, I.J. Arnquist et al., arXiv:2202.01343, 2022.
[2202.01343]
[2-4]
Search for Tri-Nucleon Decay in the Majorana Demonstrator, S.I. Alvis et al., Phys.Rev. D99 (2019) 072004, arXiv:1812.01090.
[Majorana:2018pdo]
[2-5]
First Limit on the direct detection of Lightly Ionizing Particles for Electric Charge as Low as $e$/1000 with the MAJORANA DEMONSTRATOR, S. I. Alvis et al., Phys.Rev.Lett. 120 (2018) 211804, arXiv:1801.10145.
[Majorana:2018gib]
[2-6]
New limits on bosonic dark matter, solar axions, Pauli Exclusion Principle violation, and electron decay from the low-energy spectrum of the MAJORANA DEMONSTRATOR, N. Abgrall et al., Phys.Rev.Lett. 118 (2017) 161801, arXiv:1612.00886.
[Majorana:2016hop]

3 - Detector

[3-1]
Energy Calibration of Germanium Detectors for the MAJORANA DEMONSTRATOR, I. J. Arnquist et al., JINST 18 (2023) P09023, arXiv:2306.08661.
[Majorana:2023kdx]
[3-2]
Charge Trapping and Energy Performance of the MAJORANA DEMONSTRATOR, I. J. Arnquist et al. (Majorana), Phys.Rev.C 107 (2023) 045503, arXiv:2208.03424.
[Majorana:2022vai]
[3-3]
Learning Physics from the Machine: An Interpretable Boosted Decision Tree Analysis for the Majorana Demonstrator, I. J. Arnquist et al., Phys.Rev.C 107 (2023) 014321, arXiv:2207.10710.
[Majorana:2022ulu]
[3-4]
The MAJORANA DEMONSTRATOR Readout Electronics System, N. Abgrall et al., JINST 17 (2022) T05003, arXiv:2111.09351.
[Majorana:2021mtz]
[3-5]
Pulse shape simulation of p-type Point Contact Germanium Detector for The MAJORONA DEMONSTRATOR Experiment, Akash Pandey, D. Singh, V. Singh, arXiv:2103.09679, 2021.
[Pandey:2021hrv]
[3-6]
$\alpha$-event Characterization and Rejection in Point-Contact HPGe Detectors, I.J. Arnquist et al. (Majorana), Eur.Phys.J.C 82 (2022) 226, arXiv:2006.13179.
[Majorana:2020xvk]
[3-7]
ADC Nonlinearity Correction for the MAJORANA DEMONSTRATOR, N. Abgrall et al., IEEE Trans.Nucl.Sci. 68 (2021) 359-367, arXiv:2003.04128.
[MAJORANA:2020llj]
[3-8]
Multi-site event discrimination for the MAJORANA DEMONSTRATOR, S.I. Alvis et al., Phys.Rev. C99 (2019) 065501, arXiv:1901.05388.
[Majorana:2019ftu]
[3-9]
The Processing of Enriched Germanium for the MAJORANA DEMONSTRATOR and R&D for a Possible Future Ton-Scale Ge-76 Double-Beta Decay Experiment, N. Abgrall et al., Nucl.Instrum.Meth. A877 (2018) 314-322, arXiv:1707.06255.
[MAJORANA:2017tqa]
[3-10]
The Majorana Demonstrator calibration system, N. Abgrall et al., Nucl.Instrum.Meth. A872 (2017) 16-22, arXiv:1702.02466.
[MAJORANA:2017vdg]
[3-11]
Background model for the MAJORANA DEMONSTRATOR, C. Cuesta et al., J.Phys.Conf.Ser. 888 (2017) 012240, arXiv:1610.01146.
[MAJORANA:2016hoo]
[3-12]
High voltage testing for the MAJORANA Demonstrator, N. Abgrall et al., Nucl.Instrum.Meth. A823 (2016) 83-90, arXiv:1603.08483.
[Majorana:2016zyj]
[3-13]
The Majorana Demonstrator Radioassay Program, N. Abgrall et al., Nucl.Instrum.Meth. A828 (2016) 22-36, arXiv:1601.03779.
[MAJORANA:2016lsk]
[3-14]
Analysis techniques for background rejection at the MAJORANA DEMONSTRATOR, C. Cuesta et al., AIP Conf. Proc. 1672 (2015) 140006, arXiv:1506.03202.
[MAJORANA:2015zvu]
[3-15]
Low Background Signal Readout Electronics for the MAJORANA DEMONSTRATOR, I. Guinn et al. (Majorana), J. Phys. Conf. Ser. 606 (2015) 012009, arXiv:1502.03174.
[MscriptsizeAJORANA:2015avg]
[3-16]
The Majorana Parts Tracking Database, N. Abgrall et al. (Majorana), Nucl.Instrum.Meth. A779 (2015) 52-62, arXiv:1502.01748.
[Majorana:2015saj]
[3-17]
The 'Majorana Demonstrator' Neutrinoless Double-Beta Decay Experiment, N. Abgrall et al. (Majorana), Adv.High Energy Phys. 2014 (2014) 365432, arXiv:1308.1633.
[Majorana:2013cem]
[3-18]
The Majorana Neutrinoless Double-Beta Decay Experiment, C. E. Aalseth et al. (Majorana), Phys. Atom. Nucl. 67 (2004) 2002, arXiv:hep-ex/0405008.
[Majorana:2004csc]
[3-19]
White paper on the Majorana zero-neutrino double-beta decay experiment, R. Gaitskell et al. (Majorana), arXiv:nucl-ex/0311013, 2003.
[Majorana:2003hnu]

4 - Talks

[4-1]
Results of the MAJORANA DEMONSTRATOR's Search for Neutrinoless Double Beta Decay, David J. Tedeschi (Majorana), arXiv:2401.04782, 2024. MEDEX'23.
[Tedeschi:2024tzj]
[4-2]
Recent Results of the Majorana Demonstrator Experiment, J.M.Lopez-Castano (Majorana), AIP Conf.Proc. 2165 (2019) 020018, arXiv:1909.07509. MEDEX'19.
[Lopez-Castano:2019alf]
[4-3]
Rare Low-Energy Event Searches with the Majorana Demonstrator, Gulden Othman (Majorana), arXiv:1901.09130, 2019. 14th Patras Workshop on Axions, WIMPs and WISPs, DESY in Hamburg, June 18 to 22, 2018.
[Othman:2019ckj]
[4-4]
Recent results from the MAJORANA DEMONSTRATOR, J. Myslik et al., PoS ICHEP2018 (2019) 635, arXiv:1812.08139. 39th International Conference on High Energy Physics (ICHEP2018), 4-11 July, 2018, Seoul, Korea.
[Majorana:2018ofd]
[4-5]
Recent Results from the Majorana Demonstrator, T Gilliss et al., Int.J.Mod.Phys.Conf.Ser. 46 (2018) 1860049, arXiv:1804.01582. PANIC 2017: 21st Particles and Nuclei International Conference.
[MAJORANA:2018ock]
[4-6]
The Majorana Demonstrator Status and Preliminary Results, C. -H. Yu et al., EPJ Web Conf. 178 (2018) 01006, arXiv:1803.11220. 16th International Symposium on Capture Gamma-Ray Spectroscopy and Related Topics (CGS16), 18-22 September 2017.
[Majorana:2018hei]
[4-7]
Low Background Materials and Fabrication Techniques for Cables and Connectors in the Majorana Demonstrator, M. Busch et al., AIP Conf.Proc. 1921 (2018) 070002, arXiv:1712.04985. LRT 2017.
[Busch:2017kxq]
[4-8]
Design improvements to cables and connectors in the Majorana Demonstrator, C. R. Haufe et al., arXiv:1712.03459, 2017. TAUP 2017.
[Majorana:2017kej]
[4-9]
Initial Results from the Majorana Demonstrator, T. S. Caldwell et al., J.Phys.Conf.Ser. 1342 (2020) 012023, arXiv:1711.11145. TAUP 2017.
[MAJORANA:2017spy]
[4-10]
Data quality assurance for the Majorana Demonstrator, J. Myslik et al., J.Phys.Conf.Ser. 1342 (2020) 012123, arXiv:1711.10550. TAUP 2017.
[Myslik:2017jsf]
[4-11]
Contamination Control and Assay Results for the Majorana Demonstrator Ultra Clean Components, C.D. Christofferson et al., AIP Conf.Proc. 1921 (2018) 060005, arXiv:1711.10361. Low Radioactivity Techniques (LRT May 2017, Seoul).
[MAJORANA:2017qwe]
[4-12]
Progress Toward A $2\nu\beta\beta$ Measurement For The Majorana Demonstrator, T Gilliss et al., J.Phys.Conf.Ser. 1342 (2020) 012117, arXiv:1711.05801. TAUP 2017.
[Gilliss:2017glc]
[4-13]
Spectral analysis for the Majorana Demonstrator experiment, L. Hehn et al., J.Phys.Conf.Ser. 1342 (2020) 012026, arXiv:1711.03177. TAUP 2017.
[Hehn:2017qzn]
[4-14]
The Status and Initial Results of the MAJORANA DEMONSTRATOR Experiment, V.E. Guiseppe et al., AIP Conf.Proc. 1894 (2017) 020010, arXiv:1708.07562. MEDEX'17 (Prague, May 29 - June 2, 2017).
[Guiseppe:2017rcr]
[4-15]
Delayed charge recovery discrimination of passivated surface alpha events in P-type point-contact detectors, J. Gruszko et al., J.Phys.Conf.Ser. 888 (2017) 012079, arXiv:1610.03054. XXVII International Conference on Neutrino Physics and Astrophysics.
[MAJORANA:2016buo]
[4-16]
Initial Results from the MAJORANA DEMONSTRATOR, S.R. Elliott et al., J.Phys.Conf.Ser. 888 (2017) 012035, arXiv:1610.01210. Neutrino 2016.
[Elliott:2016ble]
[4-17]
The Majorana Demonstrator search for neutrinoless double beta decay, C. Cuesta et al. (MAJORANA), PoS HQL2016 (2017) 014, arXiv:1608.07340. XIIIth International Conference on Heavy Quarks and Leptons.
[MAJORANA:2016ndd]
[4-18]
Status Update of the MAJORANA DEMONSTRATOR Neutrinoless Double Beta Decay Experiment, Julieta Gruszko et al. (MAJORANA), arXiv:1511.00395, 2015. DPF 2015 Meeting of the American Physical Society Division of Particles and Fields, Ann Arbor, Michigan, August 4-8, 2015.
[Majorana:2015tzn]
[4-19]
Status of the MAJORANA DEMONSTRATOR, C. Cuesta et al. (MAJORANA), AIP Conf. Proc. 1686 (2015) 020005, arXiv:1507.07612.
[MAJORANA:2015eky]
[4-20]
Low Background Signal Readout Electronics for the MAJORANA DEMONSTRATOR, I. Guinn et al. (MAJORANA), AIP Conf. Proc. 1672 (2015) 030001, arXiv:1506.04279. LRT 2015.
[MAJORANA:2015ebo]
[4-21]
The Majorana Demonstrator: A Search for Neutrinoless Double-beta Decay of 76Ge, W. Xu et al. (Majorana), J. Phys. Conf. Ser. 606 (2015) 012004, arXiv:1501.03089. 2nd Workshop on Germanium Detectors and Technologies, 14-17 September 2014, at the University of South Dakota, Vermillion, SD.
[MAJORANA:2015cxv]
[4-22]
Status of the MAJORANA Demonstrator, C. Cuesta et al., Nucl. Part. Phys. Proc. 265-266 (2015) 70-72, arXiv:1412.5682. NOW 2014.
[Cuesta:2014dwa]
[4-23]
A Dark Matter Search with MALBEK, G.K. Giovanetti et al. (Majordama), Phys.Procedia 00 (2014) 1, arXiv:1407.2238. TAUP 2013.
[Giovanetti:2014lxa]
[4-24]
Background Model for the Majorana Demonstrator, C. Cuesta et al., Phys.Procedia 61 (2015) 821-827, arXiv:1405.1370. TAUP 2013.
[MAJORANA:2014ret]
[4-25]
Testing the Ge detectors for the MAJORANA DEMONSTRATOR, W. Xu et al., Phys.Procedia 61 (2015) 807-815, arXiv:1404.7399. 13th International Conference on Topics in Astroparticle and Underground Physics, TAUP 2013.
[MAJORANA:2014xsa]
[4-26]
Status of the MAJORANA DEMONSTRATOR experiment, R.D. Martin et al. (MAJORANA), AIP Conf.Proc. 1604 (2014) 413-420, arXiv:1311.3310. VII International Conference on Interconnections between Particle Physics and Cosmology (PPC 2013).
[Majorana:2013clq]
[4-27]
The MAJORANA DEMONSTRATOR: A Search for Neutrinoless Double-beta Decay of Germanium-76, S.R. Elliott et al. (MAJORANA), AIP Conf.Proc. 1572 (2013) 45-48, arXiv:1307.7777. MEDEX 2013.
[Majorana:2013lfb]
[4-28]
The MGDO software library for data analysis in Ge neutrinoless double-beta decay experiments, M. Agostini et al., J. Phys. Conf. Ser. 375 (2012) 042027, arXiv:1111.7260. TAUP2011.
[Agostini:2011nf]
[4-29]
The Majorana experiment: an ultra-low background search for neutrinoless double-beta decay, D. G. Phillips II et al., J. Phys. Conf. Ser. 381 (2012) 012044, arXiv:1111.5578. Rutherford Centennial Conference on Nuclear Physics.
[Phillips:2011db]
[4-30]
The Majorana experiment, E. Aguayo, F.T. Avignone, H.O. Back, A.S. Barabash, M. Bergevin et al., AIP Conf.Proc. 1417 (2011) 95-99.
[Aguayo:2011zz]
[4-31]
The Majorana Project, C. E. Aalseth et al. (MAJORANA), J. Phys. Conf. Ser. 203 (2010) 012057, arXiv:0910.4598. TAUP 2009.
[Majorana:2009wyl]
[4-32]
The Majorana Project, S. R. Elliott et al. (MAJORANA), J. Phys. Conf. Ser. 173 (2009) 012007, arXiv:0807.1741. 2008 Carolina International Symposium on Neutrino Physics.
[Elliott:2008xc]
[4-33]
The MAJORANA 76Ge neutrino less double-beta decay project: A brief update, III Avignone, F. T. (MAJORANA), J. Phys. Conf. Ser. 120 (2008) 052059, arXiv:0711.4808.
[Avignone:2007js]
[4-34]
The Majorana Ge-76 double-beta decay project, C. E. Aalseth et al. (MAJORANA), arXiv:hep-ex/0201021, 2002. 3rd International Conference on Nonaccelerator New Physics (NANPino 01), Dubna, Moscow Region Russia, 19-23 June 2001.
[Majorana:2002pxp]

Search Neutrino Unbound

Cross search NU

It is possible to perform a cross search between the various pages of Neutrino Unbound.
This is useful if you want to show the common elements that appear in the listings of two (or more) different topics or experiments.

Go to the search form.

[Go to ...]

Neutrino Unbound Home

Authors:
Stefano Gariazzo / gariazzo@to.infn.it
Carlo Giunti / giunti@to.infn.it
Marco Laveder / marco.laveder@pd.infn.it
Last Update: Fri 19 Apr 2024, 14:41:47 CET