GY

G. Yodh

astro-ph.HEhep-exastro-ph.IMhep-phastro-ph.COphysics.ins-detnucl-exphysics.data-anastro-ph.GAastro-ph.SR

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

149 papers in the corpus · 2001–2024
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
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)
Searches for neutrinos from cosmic-ray interactions in the Sun using seven years of IceCube data1912.13135v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 12 citationsJCAP02(2021)025
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)
Velocity independent constraints on spin-dependent DM-nucleon interactions from IceCube and PICO1907.12509v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 15 citationsEur. Phys. J. C 80 (2020) 819
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)
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
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
A search for IceCube events in the direction of ANITA neutrino candidates2001.01737v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2020 · 38 citationsThe Astrophysical Journal, Volume 892, Number 1 (2020)
Constraints on Lorentz invariance violation from HAWC observations of gamma rays above 100 TeV1911.08070v2 · A. Albert, R. Alfaro, C. Alvarez et al.2019 · 70 citationsPhys. Rev. Lett. 124, 131101 (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
Time-integrated Neutrino Source Searches with 10 years of IceCube Data1910.08488v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 456 citationsPhys. Rev. Lett. 124, 051103 (2020)
MAGIC and Fermi-LAT gamma-ray results on unassociated HAWC sources1901.03982v1 · M. L. Ahnen, S. Ansoldi, L. A. Antonelli et al.2019 · 10 citationsMonthly Notices of the Royal Astronomical Society, Volume 485, Issue 1, May 2019, Pages 356-366
Targeting ultra-high energy neutrinos with the ARIANNA experiment1903.01609v2 · A. Anker, S. W. Barwick, H. Bernhoff et al.2019 · 73 citationsAdvances in Space Research 64 (2019) 2595-2609
A dependence of highly inelastic p-nucleus collisions.10012488 · Sambamurti, Blessing, Crittenden et al.2019 · 4 citationsPhysical review. D, Particles and fields. 1990;41(5):1371-1383
Production of high-pt jets in hadron-nucleus collisions.10012978 · Stewart, Zieminski, Blessing et al.2019 · 19 citationsPhysical review. D, Particles and fields. 1990;42(5):1385-1395
Publisher Correction: Very-high-energy particle acceleration powered by the jets of the microquasar SS 433.30482938 · Abeysekara, A U, Albert, A, Alfaro, R et al.2019 · 5 citationsNature. 2018;564(7736):E38
Measurement of the nuclear enhancement in high-Et and jet event production.9957982 · Gomez, Dauwe, Haggerty et al.2019 · 14 citationsPhysical review. D, Particles and fields. 1987;35(9):2736-2746
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
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)
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)
Investigation of two Fermi-LAT gamma-ray blazars coincident with high-energy neutrinos detected by IceCube1901.10806v2 · S. Garrappa, S. Buson, A. Franckowiak et al.2019 · 118 citationsApJ 880 103, 2019
Measurements using the inelasticity distribution of multi-TeV neutrino interactions in IceCube1808.07629v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2018 · 116 citationsPhys. Rev. D 99, 032004 (2019)
Detection of the Temporal Variation of the Sun's Cosmic Ray Shadow with the IceCube Detector1811.02015v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2018 · 14 citationsApJ, 872, (2019) 133
Measurement of Atmospheric Tau Neutrino Appearance with IceCube DeepCore1901.05366v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2019 · 120 citationsPhys. Rev. D 99, 032007 (2019)
All-Sky Measurement of the Anisotropy of Cosmic Rays at 10 TeV and Mapping of the Local Interstellar Magnetic Field1812.05682v3 · A.U. Abeysekara, R. Alfaro, C. Alvarez et al.2018 · 88 citationsApJ, 871, (2019) 96
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
VERITAS and Fermi-LAT observations of new HAWC sources1808.10423v1 · A. U. Abeysekara, A. Archer, W. Benbow et al.2018 · 0 citationsApJ 866 (2018) no.1, 24
Search for neutrinos from decaying dark matter with IceCube1804.03848v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2018 · 102 citationsEur. Phys. J. C (2018) 78: 831
Very high energy particle acceleration powered by the jets of the microquasar SS 4331810.01892v1 · A.U. Abeysekara, A. Albert, R. Alfaro et al.2018 · 157 citationsNature 562 (2018), 82-85
Neutrino Interferometry for High-Precision Tests of Lorentz Symmetry with IceCube1709.03434v3 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 104 citationsarXiv
A Search for Neutrino Emission from Fast Radio Bursts with Six Years of IceCube Data1712.06277v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 35 citationsAstrophys.J. 857 (2018) 117
Search for Nonstandard Neutrino Interactions with IceCube DeepCore1709.07079v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 46 citationsPhys. Rev. D 97, 072009 (2018)
Constraints on ultra-high-energy cosmic ray sources from a search for neutrinos above 10 PeV with IceCube1607.05886v3 · M. G. Aartsen, K. Abraham, M. Ackermann et al.2016 · 167 citationsPhys. Rev. Lett. 117, 241101 (2016) and Phys. Rev. Lett. 119, 259902 (2017) (Erratum)
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)
Searches for Sterile Neutrinos with the IceCube Detector.27563950 · Aartsen, M G, Abraham, K, Ackermann, M et al.2018 · 216 citationsPhysical review letters. 2016;117(7):071801
Constraints on Ultrahigh-Energy Cosmic-Ray Sources from a Search for Neutrinos above 10 PeV with IceCube.28009216 · Aartsen, M G, Abraham, K, Ackermann, M et al.2018 · 162 citationsPhysical review letters. 2016;117(24):241101
Multiwavelength follow-up of a rare IceCube neutrino multiplet1702.06131v3 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 51 citationsA&A 607, A115 (2017)
Measurement of the multi-TeV neutrino cross section with IceCube using Earth absorption1711.08119v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 193 citationsNature 551 (2017) 596-600
Measurement of the $\nu_{\mu}$ energy spectrum with IceCube-791705.07780v2 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 35 citationsarXiv
Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth1711.06223v1 · A.U. Abeysekara, A. Albert, R. Alfaro et al.2017 · 533 citationsarXiv
Constraints on Galactic Neutrino Emission with Seven Years of IceCube Data1707.03416v1 · M. G. Aartsen, M. Ackermann, J. Adams et al.2017 · 147 citationsAstrophys.J. 849 (2017) 67
Career total: 294 works. 149 are in this corpus.Showing the 50 most recent.

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