hep-exastro-ph.HEphysics.ins-detnucl-exhep-phastro-ph.IMastro-ph.COgr-qcphysics.data-anAcute traumatic brain injury

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published · living versions
W_5v5td8xr·v1 · currentpublished
Evidence for High-Energy Extraterrestrial Neutrinos at the IceCube Detector
with IceCube Collaboration, M. G. Aartsen, R. Abbasi, Y. Abdou +273
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Preprints & journals

169 papers in the corpus · 2002–2025
Nuclear binding energy and transverse momentum imbalance in neutrino-nucleus reactions1910.08658v6 · T. Cai, X.-G. Lu, L.A. Harewood et al.2019 · 62 citationsPhys. Rev. D 101, 092001 (2020)
The infrared imaging video bolometer at Wendelstein 7-X.40476856 · Partesotti, G, Wurden, G A, Reimold, F et al.2025 · 4 citationsThe Review of scientific instruments. 2025;96(6)
Painful swellings over the lumbar region in a dog.39536462 · Miller, Jonathan2025 · 0 citationsJournal of the American Veterinary Medical Association. 2025;263(3):407-409
The Penn Electrophysiology of Encoding and Retrieval Study.39023975 · Kahana, Michael J, Lohnas, Lynn J, Healey, M Karl et al.2024 · 18 citationsJournal of experimental psychology. Learning, memory, and cognition. 2024;50(9):1421-1443
Probing nuclear effects with neutrino-induced charged-current neutral pion production2002.05812v5 · D. Coplowe, O. Altinok, Z. Ahmad Dar et al.2020 · 33 citationsPhys. Rev. D 102, 072007 (2020)
Model Independent Approach of the JUNO $^8$B Solar Neutrino Program2210.08437v2 · Jie Zhao, Baobiao Yue, Haoqi Lu et al.2022 · 22 citationsAstrophysical Journal 965 (2024) 122
Development of a general analysis and unfolding scheme and its application to measure the energy spectrum of atmospheric neutrinos with IceCube: IceCube Collaboration.25995705 · Aartsen, M G, Ackermann, M, Adams, J et al.2024 · 55 citationsThe European physical journal. C, Particles and fields. 2015;75(3):116
JUNO Sensitivity on Proton Decay $p\to \bar\nu K^+$ Searches2212.08502v3 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2022 · 26 citationsarXiv
The JUNO experiment Top Tracker2303.05172v1 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2023 · 22 citationsNucl.Instrum.Meth.A 1057 (2023) 168680
JUNO sensitivity to the annihilation of MeV dark matter in the galactic halo2306.09567v3 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2023 · 12 citationsJCAP 09 (2023) 001
Simultaneous measurement of muon neutrino $\nu_\mu$ charged-current single $\pi^+$ production in CH, C, H$_2$O, Fe, and Pb targets in MINERvA2209.07852v4 · A. Bercellie, K.A. Kroma-Wiley, S. Akhter et al.2022 · 9 citationsPhys.Rev.Lett. 131 (2023) 1, 011801
Measurement of the axial vector form factor from antineutrino-proton scattering.36725994 · Cai, T, Moore, M L, Olivier, A et al.2023 · 54 citationsNature. 2023;614(7946):48-53
Mass Testing and Characterization of 20-inch PMTs for JUNO2205.08629v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2022 · 64 citationsarXiv
Sub-percent Precision Measurement of Neutrino Oscillation Parameters with JUNO2204.13249v1 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2022 · 102 citationsarXiv
Prospects for Detecting the Diffuse Supernova Neutrino Background with JUNO2205.08830v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2022 · 44 citationsJCAP 10 (2022) 033
Vertex finding in neutrino-nucleus interaction: A Model Architecture Comparison2201.02523v1 · F. Akbar, A. Ghosh, S. Young et al.2022 · 0 citationsarXiv
Simultaneous Measurement of Proton and Lepton Kinematics in Quasielasticlike ν_{μ}-Hydrocarbon Interactions from 2 to 20 GeV.35867435 · Ruterbories, D, Akhter, S, Ahmad Dar, Z et al.2022 · 17 citationsPhysical review letters. 2022;129(2):021803
Damping signatures at JUNO, a medium-baseline reactor neutrino oscillation experiment2112.14450v2 · Jun Wang, Jiajun Liao, Wei Wang et al.2021 · 13 citationsJHEP06(2022)062
The Penn Electrophysiology of Encoding and Retrieval Studybu5x8_v1 · Michael J. Kahana, Lynn J. Lohnas, Karl Healey et al.2022 · 11 citationsPsyArXiv
Constraint of the MINERvA Medium Energy Neutrino Flux using Neutrino-Electron Elastic Scattering1906.00111v4 · E. Valencia, D. Jena, Nuruzzaman et al.2019 · 74 citationsPhys. Rev. D 100, 092001 (2019)
JUNO Physics and Detector2104.02565v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2021 · 337 citationsarXiv
Radioactivity control strategy for the JUNO detector2107.03669v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2021 · 36 citationsarXiv
Constraining the NuMI neutrino flux using inverse muon decay reactions in MINERvA2107.01059v3 · D. Ruterbories, Z. Ahmad Dar, F. Akbar et al.2021 · 12 citationsPhys. Rev. D 104, 092010 (2021)
Exploring Neutrino-Nucleus Interactions in the GeV Regime using MINERvA2107.02064v2 · X.-G. Lu, Z. Ahmad Dar, F. Akbar et al.2021 · 13 citationsarXiv
JUNO sensitivity to low energy atmospheric neutrino spectra2103.09908v3 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2021 · 28 citationsEur. Phys. J. C, 81 10 (2021) 887
The Design and Sensitivity of JUNO's scintillator radiopurity pre-detector OSIRIS2103.16900v1 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2021 · 33 citationsarXiv
Calibration Strategy of the JUNO Experiment2011.06405v3 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2020 · 91 citationsarXiv
High-statistics measurement of neutrino quasielastic-like scattering at <E_nu>=~6 GeV on a hydrocarbon target1912.09890v2 · M.F. Carneiro, D. Ruterbories, Z. Ahmad Dar et al.2019 · 34 citationsPhys. Rev. Lett. 124, 121801 (2020)
Optimization of the JUNO liquid scintillator composition using a Daya Bay antineutrino detector2007.00314v1 · Daya Bay, JUNO collaborations: A. Abusleme, T. Adam et al.2020 · 71 citationsarXiv
Feasibility and physics potential of detecting $^8$B solar neutrinos at JUNO2006.11760v1 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2020 · 65 citationsarXiv
Inferring Convolutional Neural Networks' accuracies from their architectural characterizations2001.02160v2 · Duc Hoang, Jesse Hamer, Gabriel N. Perdue et al.2020 · 0 citationsarXiv
Quantum-Enhanced Advanced LIGO Detectors in the Era of Gravitational-Wave Astronomy.31868462 · Tse, M, Yu, Haocun, Kijbunchoo, N et al.2019 · 655 citationsPhysical review letters. 2019;123(23):231107
Publisher's Note: Identification of Nuclear Effects in Neutrino-Carbon Interactions at Low Three-Momentum Transfer [Phys. Rev. Lett. 116, 071802 (2016)].30500228 · Rodrigues, P A, Demgen, J, Miltenberger, E et al.2019 · 23 citationsPhysical review letters. 2018;121(20):209902
Midrapidity pi -/ pi + ratios in 1.05 GeV/nucleon 40Ca+40Ca collisions.9966325 · Harris, Miller, Pugh et al.2019 · 1 citationPhysical review. C, Nuclear physics. 1990;41(1):147-151
Tuning the GENIE Pion Production Model with MINERvA Data1903.01558v3 · P. Stowell, L. Pickering, C. Wilkinson et al.2019 · 56 citationsPhys. Rev. D 100, 072005 (2019)
Measurement of $\nu_{\mu}$ charged-current single $\pi^{0}$ production on hydrocarbon in the few-GeV region using MINERvA1708.03723v3 · O. Altinok, T. Le, L. Aliaga et al.2017 · 45 citationsPhys. Rev. D 96, 072003 (2017)
Identification of nuclear effects in neutrino-carbon interactions at low three-momentum transfer1511.05944v4 · P.A. Rodrigues, J. Demgen, E. Miltenberger et al.2015 · 138 citationsPhys. Rev. Lett. 116, 071802 (2016)
Neutron measurements from anti-neutrino hydrocarbon reactions1901.04892v2 · M. Elkins, T. Cai, J. Chaves et al.2019 · 33 citationsPhys. Rev. D 100, 052002 (2019)
Biomechanical properties and microstructure of neonatal porcine ventricles.30118921 · Ahmad, Faizan, Prabhu, Ra J, Liao, Jun et al.2019 · 28 citationsJournal of the mechanical behavior of biomedical materials. 2018;88:18-28
Detection of a Type IIn Supernova in Optical Follow-up Observations of IceCube Neutrino Events1506.03115v2 · M. G. Aartsen, K. Abraham, M. Ackermann et al.2015 · 48 citationsAstrophysical Journal (ApJ), 811, 52 (2015)
Career total: 361 works. 169 are in this corpus.Showing the 50 most recent.

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