JA
J. P. A. M. de André
astro-ph.HEhep-exphysics.ins-dethep-phastro-ph.IMastro-ph.COnucl-exastro-ph.SRphysics.acc-phastro-ph.GA
On Valency
published · living versionsW_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
124 papers in the corpus · 2011–2026Final assessment of radioactive impurities in the JUNO detector2607.17509v1 · Thomas Adam, Fengpeng An, Costas Andreopoulos et al.2026 · 0 citationsarXiv
A Low-energy Threshold and Multi-messenger Trigger System for the JUNO Experiment2607.13427v1 · Thomas Adam, Fengpeng An, Costas Andreopoulos et al.2026 · 0 citationsarXiv
Embedded underwater front-end electronics for the 3-inch photomultipliers in the JUNO experiment2604.25835v2 · C'edric Cerna, Miao He, Xiaoshan Jiang et al.2026 · 0 citationsarXiv
Design, waterproofing, and mass production of the 3-inch PMT frontend system of JUNO2510.06616v2 · Jilei Xu, Miao He, C'edric Cerna et al.2025 · 1 citationarXiv
Initial performance results of the JUNO detector2511.14590v1 · Angel Abusleme, Thomas Adam, Kai Adamowicz et al.2025 · 17 citationsarXiv
Prospects for geoneutrino detection with JUNO2511.07227v1 · Thomas Adam, Shakeel Ahmad, Rizwan Ahmed et al.2025 · 1 citationarXiv
Probing Long-Range Forces in Neutrino Oscillations at the ESSnuSB Experiment2504.10480v3 · ESSnuSB: J. Aguilar, M. Anastasopoulos, D. Barcot et al.2025 · 0 citationsJHEP 07(2025)186
Simulation of the Background from $^{13}$C$(\alpha, n)^{16}$O Reaction in the JUNO Scintillator2503.00968v3 · Thomas Adam, Kai Adamowicz, Shakeel Ahmad et al.2025 · 1 citationarXiv
Classification of Electron and Muon Neutrino Events for the ESS$\nu$SB Near Water Cherenkov Detector using Graph Neural Networks2503.15247v4 · J. Aguilar, M. Anastasopoulos, D. Barcot et al.2025 · 0 citationsarXiv
JUNO Sensitivity to Invisible Decay Modes of Neutrons2405.17792v2 · Angel Abusleme, Thomas Adam, Kai Adamowicz et al.2024 · 13 citationsarXiv
Potential to identify neutrino mass ordering with reactor antineutrinos at JUNO2405.18008v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2024 · 37 citationsarXiv
Prediction of Energy Resolution in the JUNO Experiment2405.17860v2 · Angel Abusleme, Thomas Adam, Kai Adamowicz et al.2024 · 25 citationsChinese Phys. C 49 013003 (2025)
Exploring atmospheric neutrino oscillations at ESSnuSB2407.21663v2 · ESSnuSB: J. Aguilar, M. Anastasopoulos, E. Baussan et al.2024 · 1 citationarXiv
Decoherence in Neutrino Oscillation at the ESSnuSB Experiment2404.17559v2 · ESSnuSB: J. Aguilar, M. Anastasopoulos, E. Baussan et al.2024 · 7 citationsJHEP 08 (2024) 063
Study of non-standard interaction mediated by a scalar field at ESSnuSB experiment2310.10749v2 · ESSnuSB: J. Aguilar, M. Anastasopoulos, E. Baussan et al.2023 · 0 citationsarXiv
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
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
Particle Physics at the European Spallation Source2211.10396v2 · H. Abele, A. Alekou, A. Algora et al.2022 · 43 citationsarXiv
Real-time Monitoring for the Next Core-Collapse Supernova in JUNO2309.07109v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2023 · 23 citationsarXiv
JUNO Sensitivity on Proton Decay $p\to \bar\nu K^+$ Searches2212.08502v3 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2022 · 26 citationsarXiv
Search for neutrinos from decaying dark matter with IceCube: IceCube Collaboration.30930683 · Aartsen, M G, Ackermann, M, Adams, J et al.2023 · 102 citationsThe European physical journal. C, Particles and fields. 2018;78(10):831
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
The ESSnuSB design study: overview and future prospects2303.17356v3 · A. Alekou, E. Baussan, A.K. Bhattacharyya et al.2023 · 11 citationsarXiv
Simulation Software of the JUNO Experiment2212.10741v2 · Tao Lin, Yuxiang Hu, Miao Yu et al.2022 · 24 citationsEur. Phys. J. C 83, 382 (2023)
JUNO sensitivity to $^7$Be, $pep$, and CNO solar neutrinos2303.03910v1 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2023 · 30 citationsarXiv
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
The European Spallation Source neutrino Super Beam Conceptual Design Report2206.01208v1 · A. Alekou, E. Baussan, A.K. Bhattacharyya et al.2022 · 46 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
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 European Spallation Source neutrino Super Beam2203.08803v1 · A. Alekou, E. Baussan, N. Blaskovic Kraljevic et al.2022 · 6 citationsarXiv
JUNO Physics and Detector2104.02565v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2021 · 337 citationsarXiv
Updated physics performance of the ESSnuSB experiment2107.07585v3 · A. Alekou, E. Baussan, N. Blaskovic Kraljevic et al.2021 · 31 citationsEur. Phys. J. C 81, 1130 (2021)
Radioactivity control strategy for the JUNO detector2107.03669v2 · Angel Abusleme, Thomas Adam, Shakeel Ahmad et al.2021 · 36 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
Search for transient optical counterparts to high-energy IceCube neutrinos with Pan-STARRS11901.11080v2 · E. Kankare, M. Huber, S. J. Smartt et al.2019 · 26 citationsAstron. Astrophys. 626 (2019) A117
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
Development of an analysis to probe the neutrino mass ordering with atmospheric neutrinos using three years of IceCube DeepCore data1902.07771v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 24 citationsEur. Phys. J C80, 9 (2020)
Computational Techniques for the Analysis of Small Signals in High-Statistics Neutrino Oscillation Experiments1803.05390v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2018 · 9 citationsarXiv
Neutrinos below 100 TeV from the southern sky employing refined veto techniques to IceCube data1902.05792v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 5 citationsAstroparticle Physics, Volume 116 (2020), Pages 102392
Neutrino astronomy with the next generation IceCube Neutrino Observatory1911.02561v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 9 citationsarXiv
Evidence of Electron Neutrino Appearance in a Muon Neutrino Beam1304.0841v2 · K. Abe, N. Abgrall, H. Aihara et al.2013 · 171 citationsarXiv
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)
The T2K Experiment1106.1238v2 · K. Abe, N. Abgrall, H. Aihara et al.2011 · 839 citationsarXiv
High-energy Neutrino follow-up search of Gravitational Wave Event GW150914 with ANTARES and IceCube1602.05411v3 · S. Adri'an-Mart'inez, A. Albert, M. Andr'e et al.2016 · 147 citationsPhys. Rev. D 93, 122010 (2016)
Career total: 182 works. 124 are in this corpus.Showing the 50 most recent.
Profile built from the corpus for this byline.
Author records are still filling in while the Hub is in alpha. If this is your page, you'll be able to claim it soon. Spot a mistake? Tell us.