XENON (136Xe)

Other Web pages: INSPIRE

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References

1 - Solar Neutrinos

[1-1]
Probing the Solar $^8$B Neutrino Fog with XENONnT, E. Aprile et al. (XENON), arXiv:2604.06002, 2026.
[XENON:2026ydt]
[1-2]
First Measurement of Solar $^8$B Neutrinos via Coherent Elastic Neutrino-Nucleus Scattering with XENONnT, Elena Aprile et al., Phys.Rev.Lett. 133 (2024) 191002, arXiv:2408.02877.
[XENON:2024ijk]
[1-3]
Search for New Physics in Electronic Recoil Data from XENONnT, E. Aprile et al. (XENON), Phys. Rev. Lett. 129 (2022) 161805, arXiv:2207.11330.
[XENON:2022ltv]
[1-4]
Search for Coherent Elastic Scattering of Solar $^8$B Neutrinos in the XENON1T Dark Matter Experiment, E. Aprile et al. (XENON), Phys. Rev. Lett. 126 (2021) 091301, arXiv:2012.02846.
[XENON:2020gfr]
[1-5]
Excess electronic recoil events in XENON1T, E. Aprile et al. (XENON), Phys. Rev. D 102 (2020) 072004, arXiv:2006.09721.
[XENON:2020rca]

2 - Double Beta Decay

[2-1]
Double-Weak Decays of $^{124}$Xe and $^{136}$Xe in the XENON1T and XENONnT Experiments, E. Aprile et al. (XENON), Phys. Rev. C 106 (2022) 024328, arXiv:2205.04158.
[XENON:2022evz]
[2-2]
Observation of two-neutrino double electron capture in $^{124}$Xe with XENON1T, E. Aprile et al. (XENON), Nature 568 (2019) 532-535, arXiv:1904.11002.
[XENON:2019dti]

3 - Dark Matter

[3-1]
Light Dark Matter Search with 7.8 Tonne-Year of Ionization-Only Data in XENONnT, Elena Aprile et al., arXiv:2601.11296, 2026.
[XENON:2026qow]
[3-2]
Constraints on Solar Reflected Dark Matter from a combined analysis of XENON1T and XENONnT data, E. Aprile et al. (XENON), arXiv:2512.19592, 2025.
[XENON:2025dpl]
[3-3]
WIMP Dark Matter Search using a 3.1 tonne $\times$ year Exposure of the XENONnT Experiment, E. Aprile et al., Phys.Rev.Lett. 135 (2025) 221003, arXiv:2502.18005.
[XENON:2025vwd]
[3-4]
Search for Light Dark Matter in Low-Energy Ionization Signals from XENONnT, E. Aprile et al., arXiv:2411.15289, 2024.
[XENON:2024tjg]
[3-5]
First Search for Light Dark Matter in the Neutrino Fog with XENONnT, E. Aprile et al., arXiv:2409.17868, 2024.
[2409.17868]
[3-6]
Effective field theory and inelastic dark matter results from XENON1T, E. Aprile et al. (XENON), Phys. Rev. D 109 (2024) 112017, arXiv:2210.07591.
[XENON:2022avm]
[3-7]
Search for inelastic scattering of WIMP dark matter in XENON1T, E. Aprile et al. (XENON), Phys. Rev. D 103 (2021) 063028, arXiv:2011.10431.
[XENON:2020fgj]
[3-8]
Search for Light Dark Matter Interactions Enhanced by the Migdal Effect or Bremsstrahlung in XENON1T, E. Aprile et al. (XENON), Phys. Rev. Lett. 123 (2019) 241803, arXiv:1907.12771.
[XENON:2019zpr]
[3-9]
First results on the scalar WIMP-pion coupling, using the XENON1T experiment, E. Aprile et al. (XENON), Phys. Rev. Lett. 122 (2019) 071301, arXiv:1811.12482.
[XENON:2018clg]
[3-10]
Dark Matter Search Results from a One Ton-Year Exposure of XENON1T, E. Aprile et al. (XENON), Phys. Rev. Lett. 121 (2018) 111302, arXiv:1805.12562.
[XENON:2018voc]

4 - Physics

[4-1]
Challenging Spontaneous Quantum Collapse with XENONnT, E. Aprile et al. (XENON), Phys.Rev.Lett. 136 (2026) 120201, arXiv:2506.05507.
[XENON:2025iov]

5 - Astrophysics

[5-1]
Search for events in XENON1T associated with gravitational waves, E. Aprile et al. (XENON), Phys. Rev. D 108 (2023) 072015, arXiv:2306.11871.
[XENONCollaborationSS:2023zbo]

6 - Detector

[6-1]
Enhancing Neutrinoless Double-Beta Decay Sensitivity of Liquid-Xenon Time Projection Chamber with Augmented Convolutional Neural Network, E. Aprile et al. (XENON), arXiv:2603.23549, 2026.
[XENON:2026mpt]
[6-2]
Radon Removal in XENONnT down to the Solar Neutrino Level, E. Aprile et al. (XENON), Phys.Rev.X 15 (2025) 031079, arXiv:2502.04209.
[XENON:2025nic]
[6-3]
Low-Energy Nuclear Recoil Calibration of XENONnT with a $^{88}$YBe Photoneutron Source, E. Aprile et al. (XENON), arXiv:2412.10451, 2024.
[XENON:2024kbh]
[6-4]
XENONnT Analysis: Signal Reconstruction, Calibration and Event Selection, XENON Collaboration et al., Phys.Rev.D 111 (2025) 062006, arXiv:2409.08778.
[XENON:2024mlv]
[6-5]
XENONnT WIMP Search: Signal & Background Modeling and Statistical Inference, E. Aprile et al. (XENON), Phys.Rev.D 111 (2025) 103040, arXiv:2406.13638.
[XENON:2024xgd]
[6-6]
The XENONnT Dark Matter Experiment, E. Aprile et al. (XENON), Eur.Phys.J.C 84 (2024) 784, arXiv:2402.10446.
[XENON:2024wpa]
[6-7]
Design and performance of the field cage for the XENONnT experiment, E. Aprile et al. (XENONnT), Eur. Phys. J. C 84 (2024) 138, arXiv:2309.11996.
[XENONnT:2023dvq]
[6-8]
The triggerless data acquisition system of the XENONnT experiment, E. Aprile et al. (XENON), JINST 18 (2023) P07054, arXiv:2212.11032.
[XENON:2022vye]
[6-9]
Low-energy calibration of XENON1T with an internal $^{{textbf {37}}}$Ar source, E. Aprile et al. (XENON), Eur. Phys. J. C 83 (2023) 542, arXiv:2211.14191.
[XENON:2022ivg]
[6-10]
Material radiopurity control in the XENONnT experiment, E. Aprile et al. (XENON), Eur. Phys. J. C 82 (2022) 599, arXiv:2112.05629.
[XENON:2021mrg]
[6-11]
$^{222}$Rn emanation measurements for the XENON1T experiment, E. Aprile et al. (XENON), Eur. Phys. J. C 81 (2021) 337, arXiv:2009.13981.
[XENON:2020fbs]
[6-12]
Energy resolution and linearity of XENON1T in the MeV energy range, E. Aprile et al. (XENON), Eur. Phys. J. C 80 (2020) 785, arXiv:2003.03825.
[XENON:2020iwh]
[6-13]
The XENON1T Dark Matter Experiment, E. Aprile et al. (XENON), Eur. Phys. J. C 77 (2017) 881, arXiv:1708.07051.
[XENON:2017lvq]

7 - Talks

[7-1]
Neutrinoless double $\beta$ decay search in XENON1T and XENONnT, Maxime Pierre (XENON), PoS ICRC2021 (2021) 540.
[Pierre:2021idk]
[7-2]
Neutrinoless double $\beta$ decay search with XENON1T and XENONnT, M. Pierre (XENON), Nuovo Cim. C 45 (2021) 17.
[Pierre:2021qzz]
[7-3]
Search for double $\beta$-decays of $^{124}$Xe with XENON100 & XENON1T, Alexander Fieguth (XENON), J. Phys. Conf. Ser. 888 (2017) 012251.
[Fieguth:2017aca]

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Authors:
Stefano Gariazzo / gariazzo@to.infn.it
Carlo Giunti / giunti@to.infn.it
Marco Laveder / marco.laveder@pd.infn.it
Last Update: Fri 12 Jun 2026, 11:16:31 CET