hep-exastro-ph.HEhep-phphysics.ins-detastro-ph.IMnucl-exastro-ph.COastro-ph.SRCell NucleusPhotons

On Valency

published · living versions
W_mzpzrnd2·v1 · currentpublished
The IceCube Neutrino Observatory: Instrumentation and Online Systems
with IceCube Collaboration, M. G. Aartsen, M. Ackermann, J. Adams +348
1 version

Preprints & journals

69 papers in the corpus · 2002–2026
Search for New Physics via Low-Energy Electron Recoils with a 4.2 Tonne\times Year Exposure from the LZ Experiment2511.17350v2 · D.S. Akerib, A.K. Al Musalhi, F. Alder et al.2025 · 1 citationPhys.Rev.Lett. 137 (2026) 101803
First search for light fermionic dark matter absorption on electrons using germanium detector in CDEX-10 experiment2404.09793v2 · J. X. Liu, L. T. Yang, Q. Yue et al.2024 · 1 citationPhys. Rev. D 113, 032011 (2026)
Setting limits on blazar-boosted dark matter with xenon-based detectors2509.07265v3 · Erin Barillier, Laura Manenti, Knut Mora et al.2025 · 1 citationarXiv
The XLZD Design Book: Towards the Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics2410.17137v3 · J. Aalbers, K. Abe, M. Adrover et al.2024 · 31 citationsEur. Phys. J. C (2025) 85: 1192
Dark Matter Search Results from 4.2  Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment.40743074 · Aalbers, J, Akerib, D S, Musalhi, A K Al et al.2025 · 175 citationsPhysical review letters. 2025;135(1):011802
First constraint for atmospheric millicharged particles with the LUX-ZEPLIN experiment2412.04854v4 · J. Aalbers, D. S. Akerib, A. K. Al Musalhi et al.2024 · 2 citationsPhysical Review Letters 134, 241802 (2025)
New constraints on cosmic ray-boosted dark matter from the LUX-ZEPLIN experiment2503.18158v2 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2025 · 8 citationsPhysical Review Letters 134, 241801 (2025)
Spin-dependent dark matter interactions at loop-level in Ar and Xe2408.13664v2 · Nassim Bozorgnia, Muping Chen, Graciela B. Gelmini et al.2024 · 1 citationarXiv
First Joint Oscillation Analysis of Super-Kamiokande Atmospheric and T2K Accelerator Neutrino Data.39913709 · Abe, K, Abe, S, Bronner, C et al.2025 · 23 citationsPhysical review letters. 2025;134(1):011801
Probing Dark Matter Particles from Evaporating Primordial Black Holes via Electron Scattering in the CDEX-10 Experiment2403.20263v2 · Z. H. Zhang, L. T. Yang, Q. Yue et al.2024 · 11 citationsSci. China Phys. Mech. Astron. 67, 101011 (2024)
Constraints on the Blazar-Boosted Dark Matter from the CDEX-10 Experiment2403.20276v1 · R. Xu, L. T. Yang, Q. Yue et al.2024 · 2 citationsarXiv
The IceCube Neutrino Observatory: Instrumentation and Online Systems1612.05093v3 · M. G. Aartsen, M. Ackermann, J. Adams et al.2016 · 842 citationsJINST 12 P03012 (2017)on Valency
Probing dark matter particles at CEPC1903.12114v2 · Zuowei Liu, Yong-Heng Xu, Yu Zhang2019 · 36 citationsarXiv
Measurements of neutrino oscillation parameters from the T2K experiment using $3.6\times10^{21}$ protons on target2303.03222v3 · K. Abe, N. Akhlaq, R. Akutsu et al.2023 · 136 citationsEur. Phys. J. C 83, 782 (2023)
Exotic Dark Matter Search with CDEX-10 Experiment at China's Jinping Underground Laboratory2209.00861v2 · W. H. Dai, L. P. Jia, H. Ma et al.2022 · 23 citationsPhys. Rev. Lett. 129, 221802, 2022
Scintillator ageing of the T2K near detectors from 2010 to 20212207.12982v1 · K. Abe, N. Akhlaq, R. Akutsu et al.2022 · 8 citationsarXiv
An eV-scale sterile neutrino search using eight years of atmospheric muon neutrino data from the IceCube Neutrino Observatory2005.12942v4 · M. G. Aartsen, R. Abbasi, M. Ackermann et al.2020 · 92 citationsPhys. Rev. Lett. 125, 141801 (2020)
Measurement of the high-energy all-flavor neutrino-nucleon cross section with IceCube2011.03560v1 · R. Abbasi, M. Ackermann, J. Adams et al.2020 · 49 citationsPhys. Rev. D 104, 022001 (2021)
LeptonInjector and LeptonWeighter: A neutrino event generator and weighter for neutrino observatories2012.10449v2 · R. Abbasi, M. Ackermann, J. Adams et al.2020 · 24 citationsComput. Phys. Commun. 266 (2021) 108018
Search for GeV Neutrino Emission During Intense Gamma-Ray Solar Flares with the IceCube Neutrino Observatory2101.00610v2 · R. Abbasi, M. Ackermann, J. Adams et al.2021 · 15 citationsPhys. Rev. D 103, 102001 (2021)
Follow-up of astrophysical transients in real time with the IceCube Neutrino Observatory2012.04577v2 · R. Abbasi, M. Ackermann, J. Adams et al.2020 · 30 citationsApJ 910 4 (2021)
Searching for eV-scale sterile neutrinos with eight years of atmospheric neutrinos at the IceCube neutrino telescope2005.12943v2 · M. G. Aartsen, R. Abbasi, M. Ackermann et al.2020 · 73 citationsPhys. Rev. D 102, 052009 (2020)
Characteristics of the diffuse astrophysical electron and tau neutrino flux with six years of IceCube high energy cascade data2001.09520v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2020 · 277 citationsPhys. Rev. Lett. 125, 121104 (2020)
Efficient propagation of systematic uncertainties from calibration to analysis with the SnowStorm method in IceCube1909.01530v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 41 citationsJCAP 10 (2019) 048
IceCube Search for Neutrinos Coincident with Compact Binary Mergers from LIGO-Virgo's First Gravitational-Wave Transient Catalog2004.02910v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2020 · 46 citationsAstrophys. J. Lett. 898 (2020) L10
Direct Detection Constraints on Dark Photons with CDEX-10 Experiment at the China Jinping Underground Laboratory1910.13234v2 · Z. She, L. P. Jia, Q. Yue et al.2019 · 48 citationsPhys. Rev. Lett. 124, 111301 (2020)
Search for PeV Gamma-Ray Emission from the Southern Hemisphere with 5 Years of Data from the IceCube Observatory1908.09918v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 16 citationsThe Astrophysical Journal, 891:9 (16pp), 2020 March 1
Neutrinos and Cosmic Rays Observed by IceCube1701.03731v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 38 citationsAdvances in Space Research 62 (2018) 2902-2930
Limits on Light Weakly Interacting Massive Particles from the First 102.8 kg ${\times}$ day Data of the CDEX-10 Experiment1802.09016v2 · H. Jiang, L. P. Jia, Q. Yue et al.2018 · 150 citationsPhys. Rev. Lett. 120, 241301 (2018)
Measurement of Atmospheric Neutrino Oscillations at 6-56 GeV with IceCube DeepCore1707.07081v4 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 186 citationsPhys. Rev. Lett. 120, 071801 (2018)
Importance and construction of features in identifying new physics signals with deep learning1712.03806v1 · Chang-Wei Loh, Rui Zhang, Yong-Heng Xu et al.2017 · 2 citationsarXiv
Search for astrophysical sources of neutrinos using cascade events in IceCube1705.02383v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 36 citationsAstrophys. J. 846 (2017) 136
First search for dark matter annihilations in the Earth with the IceCube Detector1609.01492v2 · M. G. Aartsen, K. Abraham, M. Ackermann et al.2016 · 39 citationsEuropean Physical Journal C77, 82 (2017)
Search for annihilating dark matter in the Sun with 3 years of IceCube data1612.05949v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2016 · 195 citationsEur. Phys. J. C (2017) 77: 146
Search for Sources of High Energy Neutrons with Four Years of Data from the IceTop Detector1607.05614v4 · M. G. Aartsen, K. Abraham, M. Ackermann et al.2016 · 7 citationsApJ, 830:129 (2016)
Characterization and Performance of Germanium Detectors with sub-keV Sensitivities for Neutrino and Dark Matter Experiments1411.4802v3 · A.K. Soma, M.K. Singh, L. Singh et al.2014 · 92 citationsNuclear Instruments and Methods A 836, 67-82 (2016)
Measurement of the Reactor Antineutrino Flux and Spectrum at Daya Bay1508.04233v1 · F. P. An, A. B. Balantekin, H. R. Band et al.2015 · 248 citationsPhys. Rev. Lett. 116, 061801 (2016)
A new measurement of antineutrino oscillation with the full detector configuration at Daya Bay1505.03456v2 · F. P. An, A. B. Balantekin, H. R. Band et al.2015 · 223 citationsPhys. Rev. Lett. 115, 111802 (2015)
First observation of $\eta(1405)$ decays into $f_{0}(980)\pi^0$1201.2737v2 · M. Ablikim, M. N. Achasov, D. Alberto et al.2012 · 99 citationsarXiv
Observation of two new N* resonances in the decay ψ(3686)→ppπ0.23383891 · Ablikim, M, Achasov, M N, Ambrose, D J et al.2013 · 46 citationsPhysical review letters. 2013;110(2):022001
Spin-parity analysis of pp¯ mass threshold structure in J/ψ and ψ(3686) radiative decays.22540467 · Ablikim, M, Achasov, M N, Alberto, D et al.2012 · 96 citationsPhysical review letters. 2012;108(11):112003
A side-by-side comparison of Daya Bay antineutrino detectors1202.6181v1 · F. P. An, Q. An, J. Z. Bai et al.2012 · 156 citationsNucl. Instr. Meth A 685, 78-97 (2012)
Observation of electron-antineutrino disappearance at Daya Bay1203.1669v2 · F. P. An, J. Z. Bai, A. B. Balantekin et al.2012 · 2,241 citationsPhys. Rev. Lett. 108, 171803 (2012)
Career total: 102 works. 69 are in this corpus.Showing the 50 most recent.

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