AC
A. Connolly
astro-ph.HEastro-ph.IMhep-exhep-phastro-ph.COastro-ph.GAphysics.ins-detcs.LGhep-thnucl-ex
On Valency
published · living versionsW_ypc83djm·v1 · currentpublished
Observation of high-energy neutrinos from the Galactic plane
with R. Abbasi, M. Ackermann, J. Adams, J. A. Aguilar +384
1 version
Preprints & journals
110 papers in the corpus · 2001–2025Measurement of the inelasticity distribution of neutrino-nucleon interactions for $\mathbf{80~GeV<E_{\nu}<560~GeV}$ with IceCube DeepCore2502.13299v2 · R. Abbasi, M. Ackermann, J. Adams et al.2025 · 0 citationsarXiv
Probing the PeV Region in the Astrophysical Neutrino Spectrum using $\nu_\mu$ from the Southern Sky2502.19776v2 · R. Abbasi, M. Ackermann, J. Adams et al.2025 · 0 citationsarXiv
Search for Heavy Neutral Leptons with IceCube DeepCore2502.09454v1 · R. Abbasi, M. Ackermann, J. Adams et al.2025 · 1 citationarXiv
Time-Integrated Southern-Sky Neutrino Source Searches with 10 Years of IceCube Starting-Track Events at Energies Down to 1 TeV2501.16440v1 · R. Abbasi, M. Ackermann, J. Adams et al.2025 · 1 citationarXiv
A search for an eV-scale sterile neutrino using improved high-energy $\nu_\mu$ event reconstruction in IceCube2405.08070v2 · R. Abbasi, M. Ackermann, J. Adams et al.2024 · 15 citationsPhys. Rev. Lett. 133, 201804 (2024)
Search for a light sterile neutrino with 7.5 years of IceCube DeepCore data2407.01314v2 · R. Abbasi, M. Ackermann, J. Adams et al.2024 · 8 citationsarXiv
Searching for Decoherence from Quantum Gravity at the IceCube South Pole Neutrino Observatory2308.00105v1 · R. Abbasi, M. Ackermann, J. Adams et al.2023 · 3 citationsNature Phys. 20 (2024) 913-920
ARA-Next: a new DAQ and trigger architecture for the Askaryan Radio Array2409.07634v1 · Pawan Giri, Ilya Kravchenko, Patrick Allison et al.2024 · 1 citationarXiv
Design and Sensitivity of the Radio Neutrino Observatory in Greenland (RNO-G)2010.12279v5 · J. A. Aguilar, P. Allison, J. J. Beatty et al.2020 · 176 citationsJINST 16 P03025 2021
Search for sub-TeV Neutrino Emission from Novae with IceCube-DeepCore2212.06810v4 · R. Abbasi, M. Ackermann, J. Adams et al.2022 · 17 citationsApJ 953 160 (2023)
Characterization of the Astrophysical Diffuse Neutrino Flux using Starting Track Events in IceCube2402.18026v1 · R. Abbasi, M. Ackermann, J. Adams et al.2024 · 68 citationsPhys. Rev. D 110, 022001 (2024)
Improved modeling of in-ice particle showers for IceCube event reconstruction2403.02470v2 · R. Abbasi, M. Ackermann, J. Adams et al.2024 · 9 citations2024 JINST 19 P06026
Observation of Seven Astrophysical Tau Neutrino Candidates with IceCube.38682982 · Abbasi, R, Ackermann, M, Adams, J et al.2024 · 30 citationsPhysical review letters. 2024;132(15):151001
Citizen Science for IceCube: Name that Neutrino2401.11994v1 · R. Abbasi, M. Ackermann, J. Adams et al.2024 · 1 citationarXiv
Search for Extended Sources of Neutrino Emission in the Galactic Plane with IceCube2307.07576v2 · R. Abbasi, M. Ackermann, J. Adams et al.2023 · 15 citationsApJ 956 20 (2023)
Observation of Seasonal Variations of the Flux of High-Energy Atmospheric Neutrinos with IceCube2303.04682v2 · R. Abbasi, M. Ackermann, J. Adams et al.2023 · 14 citationsEur.Phys.J.C 83 (2023) 9, 777
Measurement of Atmospheric Neutrino Mixing with Improved IceCube DeepCore Calibration and Data Processing2304.12236v2 · R. Abbasi, M. Ackermann, J. Adams et al.2023 · 63 citationsarXiv
Observation of high-energy neutrinos from the Galactic plane2307.04427v1 · R. Abbasi, M. Ackermann, J. Adams et al.2023 · 309 citationsScience 380, 6652, 1338-1343 (2023)on Valency
Discussion about a Standard Definition of the Signal-to-Noise Ratio (SNR) for Radio Signals of ultra-high-energy Particles (ARENA2022)2306.05901v1 · Frank G. Schroder, Amy L. Connolly, Tim Huege et al.2023 · 3 citationsPoS 424 (2023) 027
Constraining High-Energy Neutrino Emission from Supernovae with IceCube2303.03316v1 · R. Abbasi, M. Ackermann, J. Adams et al.2023 · 32 citationsarXiv
D-Egg: a Dual PMT Optical Module for IceCube2212.14526v1 · R. Abbasi, M. Ackermann, J. Adams et al.2022 · 12 citationsarXiv
Searches for Neutrinos from LHAASO ultra-high-energy {\gamma}-ray sources using the IceCube Neutrino Observatory2211.14184v1 · R. Abbasi, M. Ackermann, J. Adams et al.2022 · 13 citationsarXiv
Reconstructing the neutrino energy for in-ice radio detectors2107.02604v2 · J. A. Aguilar, P. Allison, J. J. Beatty et al.2021 · 36 citationsEur. Phys. J. C (2022) 82: 147
Analysis of a Tau Neutrino Origin for the Near-Horizon Air Shower Events Observed by the Fourth Flight of the Antarctic Impulsive Transient Antenna (ANITA)2112.07069v1 · R. Prechelt, S. A. Wissel, A. Romero-Wolf et al.2021 · 19 citationsarXiv
Using Evolutionary Algorithms to Design Antennas with Greater Sensitivity to Ultra High Energy Neutrinos2112.03246v1 · J. Rolla, A. Machtay, A. Patton et al.2021 · 3 citationsarXiv
The IceCube-Gen2 Collaboration -- Contributions to the 37th International Cosmic Ray Conference (ICRC2021)2107.06968v1 · R. Abbasi, M. Ackermann, J. Adams et al.2021 · 0 citationsarXiv
HiCal 2: An instrument designed for calibration of the ANITA experiment and for Antarctic surface reflectivity measurements1710.11175v2 · S. Prohira, A. Novikov, D. Z. Besson et al.2017 · 16 citationsarXiv
The Next-Generation Radio Neutrino Observatory -- Multi-Messenger Neutrino Astrophysics at Extreme Energies1907.12526v3 · J. A. Aguilar, P. Allison, S. Archambault et al.2019 · 26 citationsarXiv
Search for MSSM Higgses at the Tevatronhep-ex/0212016v1 · A. Connolly2002 · 0 citationsarXiv
Status of SalSA1010.4347v1 · A. Connolly2010 · 2 citationsarXiv
The Simulation of the Sensitivity of the Antarctic Impulsive Transient Antenna (ANITA) to Askaryan Radiation from Cosmogenic Neutrinos Interacting in the Antarctic Ice1903.11043v2 · L. Cremonesi, A. Connolly, P. Allison et al.2019 · 14 citationsarXiv
Search for Long-lived Charged Massive Particles at CDFhep-ex/9904010v1 · A. Connolly1999 · 3 citationsarXiv
Astrophysics Uniquely Enabled by Observations of High-Energy Cosmic Neutrinos1903.04334v2 · Markus Ackermann, Markus Ahlers, Luis Anchordoqui et al.2019 · 55 citationsBull. Am. Astron. Soc. 51, 185 (2019)
Constraints on the ultra-high energy cosmic neutrino flux from the fourth flight of ANITA1902.04005v1 · P. W. Gorham, P. Allison, O. Banerjee et al.2019 · 105 citationsPhys. Rev. D 99, 122001 (2019)
A comprehensive analysis of anomalous ANITA events disfavors a diffuse tau-neutrino flux origin1811.07261v3 · A. Romero-Wolf, S. A. Wissel, H. Schoorlemmer et al.2018 · 60 citationsPhys. Rev. D 99, 063011 (2019)
Extracting the Energy-Dependent Neutrino-Nucleon Cross Section Above 10 TeV Using IceCube Showers1711.11043v2 · Mauricio Bustamante, Amy Connolly2017 · 128 citationsPhys. Rev. Lett. 122, 041101 (2019)
Observation of an Unusual Upward-going Cosmic-ray-like Event in the Third Flight of ANITA1803.05088v1 · P. W. Gorham, B. Rotter, P. Allison et al.2018 · 139 citationsPhys. Rev. Lett. 121, 161102 (2018)
Antarctic Surface Reflectivity Calculations and Measurements from the ANITA-4 and HiCal-2 Experiments1801.08909v1 · S. Prohira, A. Novikov, P. Dasgupta et al.2018 · 14 citationsPhys. Rev. D 98, 042004 (2018)
Constraints on the diffuse high-energy neutrino flux from the third flight of ANITA1803.02719v3 · P. W. Gorham, P. Allison, O. Banerjee et al.2018 · 87 citationsPhys. Rev. D 98, 022001 (2018)
Characteristics of Four Upward-pointing Cosmic-ray-like Events Observed with ANITA1603.05218v5 · P.W.Gorham, J.Nam, A.Romero-Wolf et al.2016 · 145 citationsPhys. Rev. Lett. 117, 071101 (2016)
Search for First-Generation Scalar Leptoquarks in $\bm{p \bar{p}}$ collisions at $\sqrt{s}$=1.96 TeVhep-ex/0506074v1 · D.Acosta, J.Adelman, T.Affolder et al.2005 · 27 citationsPhys.Rev.D72:051107,2005
Energy and Flux Measurements of Ultra-High Energy Cosmic Rays Observed During the First ANITA Flight1506.05396v3 · H. Schoorlemmer, K. Belov, A. Romero-Wolf et al.2015 · 82 citationsarXiv
Snowmass Cosmic Frontiers 6 (CF6) Working Group Summary --The Bright Side of the Cosmic Frontier: Cosmic Probes of Fundamental Physics1310.5662v2 · J.J. Beatty, A.E. Nelson, A. Olinto et al.2013 · 2 citationsarXiv
Neutrino Absorption in the Earth, Neutrino Cross-Sections, and New Physics1304.4891v1 · Spencer R. Klein, Amy Connolly2013 · 15 citationsarXiv
Calculation of High Energy Neutrino-Nucleon Cross Sections and Uncertainties Using the MSTW Parton Distribution Functions and Implications for Future Experiments1102.0691v2 · Amy Connolly, Robert S. Thorne, David Waters2011 · 171 citationsPhys.Rev.D83:113009,2011
Comparison of Three-jet Events in Proton-Antiproton Collisions at Center-of-mass Energy 1.8 TeV to Predictions from a Next-to-leading Order QCD Calculationhep-ex/0410018v1 · D. Acosta, T. Affolder, M.G. Albrow et al.2004 · 6 citationsPhys.Rev.D71:032002,2005
Measurement of the ratios of branching fractions and.16803097 · Abulencia, A, Acosta, D, Adelman, J et al.2006 · 16 citationsPhysical review letters. 2006;96(19):191801
Search for scalar bottom quarks from gluino decays in collisions at.16712288 · Abulencia, A, Acosta, D, Adelman, J et al.2006 · 11 citationsPhysical review letters. 2006;96(17):171802
Direct search for Dirac magnetic monopoles in pp collisions at square root s = 1.96 TeV.16803165 · Abulencia, A, Acosta, D, Adelman, J et al.2006 · 65 citationsPhysical review letters. 2006;96(20):201801
Measurement of bottom-quark hadron masses in exclusive J/psi decays with the CDF detector.16803166 · Acosta, D, Adelman, J, Affolder, T et al.2006 · 97 citationsPhysical review letters. 2006;96(20):202001
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