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  • Result 1-10 of 202
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1.
  • Aad, G, et al. (author)
  • 2015
  • swepub:Mat__t
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4.
  • Aartsen, M. G., et al. (author)
  • Cosmic ray spectrum and composition from PeV to EeV using 3 years of data from IceTop and IceCube
  • 2019
  • In: Physical Review D. - : AMER PHYSICAL SOC. - 2470-0010 .- 2470-0029. ; 100:8
  • Journal article (peer-reviewed)abstract
    • We report on measurements of the all-particle cosmic ray energy spectrum and composition in the PeV to EeV energy range using 3 years of data from the IceCube Neutrino Observatory. The IceTop detector measures cosmic ray induced air showers on the surface of the ice, from which the energy spectrum of cosmic rays is determined by making additional assumptions about the mass composition. A separate measurement is performed when IceTop data are analyzed in coincidence with the high-energy muon energy loss information from the deep in-ice IceCube detector. In this measurement, both the spectrum and the mass composition of the primary cosmic rays are simultaneously reconstructed using a neural network trained on observables from both detectors. The performance and relative advantages of these two distinct analyses are discussed, including the systematic uncertainties and the dependence on the hadronic interaction models, and both all-particle spectra as well as individual spectra for elemental groups are presented.
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5.
  • Abbasi, R., et al. (author)
  • Solar energetic particle spectrum on 2006 December 13 determined by IceTop
  • 2008
  • In: Astrophysical Journal. - : American Astronomical Society. - 0004-637X .- 1538-4357. ; 689:1, s. L65-L68
  • Journal article (peer-reviewed)abstract
    • On 2006 December 13 the IceTop air shower array at the South Pole detected a major solar particle event. By numerically simulating the response of the IceTop tanks, which are thick Cerenkov detectors with multiple thresholds deployed at high altitude with no geomagnetic cutoff, we determined the particle energy spectrum in the energy range 0.6-7.6 GeV. This is the first such spectral measurement using a single instrument with a well-defined viewing direction. We compare the IceTop spectrum and its time evolution with previously published results and outline plans for improved resolution of future solar particle spectra.
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6.
  • Abbasi, R., et al. (author)
  • The IceCube data acquisition system : Signal capture, digitization, and timestamping
  • 2009
  • In: Nuclear Instruments and Methods in Physics Research Section A. - : Elsevier BV. - 0168-9002 .- 1872-9576. ; 601:3, s. 294-316
  • Journal article (peer-reviewed)abstract
    • IceCube is a km-scale neutrino observatory under construction at the South Pole with sensors both in the deep ice (InIce) and on the surface (IceTop). The sensors, called Digital Optical Modules (DOMs). detect, digitize and timestamp the signals from optical Cherenkov-radiation photons. The DOM Main Board (MB) data acquisition subsystem is connected to the central DAQ in the IceCube Laboratory (ICL) by a single twisted copper wire-pair and transmits packetized data on demand. Time calibration is maintained throughout the array by regular transmission to the DOMs of precisely timed analog signals, synchronized to a central GPS-disciplined clock. The design goals and consequent features, functional capabilities, and initial performance of the DOM MB, and the operation of a combined array of DOMs as a system, are described here. Experience with the first InIce strings and the IceTop stations indicates that the system design and performance goals have been achieved. (c) 2009 Elsevier B.V. All rights reserved.
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7.
  • Abbasi, R., et al. (author)
  • Citizen science for IceCube: Name that Neutrino
  • 2024
  • In: European Physical Journal Plus. - 2190-5444. ; 139:6
  • Journal article (peer-reviewed)abstract
    • Name that Neutrino is a citizen science project where volunteers aid in classification of events for the IceCube Neutrino Observatory, an immense particle detector at the geographic South Pole. From March 2023 to September 2023, volunteers did classifications of videos produced from simulated data of both neutrino signal and background interactions. Name that Neutrino obtained more than 128,000 classifications by over 1800 registered volunteers that were compared to results obtained by a deep neural network machine-learning algorithm. Possible improvements for both Name that Neutrino and the deep neural network are discussed.
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8.
  • Abbasi, R., et al. (author)
  • Limits on a muon flux from Kaluza-Klein dark matter annihilations in the Sun from the IceCube 22-string detector
  • 2010
  • In: Physical Review D. - 1550-7998 .- 1550-2368. ; 81:5, s. 057101-
  • Journal article (peer-reviewed)abstract
    • A search for muon neutrinos from Kaluza-Klein dark matter annihilations in the Sun has been performed with the 22-string configuration of the IceCube neutrino detector using data collected in 104.3 days of live time in 2007. No excess over the expected atmospheric background has been observed. Upper limits have been obtained on the annihilation rate of captured lightest Kaluza-Klein particle (LKP) WIMPs in the Sun and converted to limits on the LKP-proton cross sections for LKP masses in the range 250-3000 GeV. These results are the most stringent limits to date on LKP annihilation in the Sun.
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9.
  • Abbasi, R., et al. (author)
  • Measurement of atmospheric neutrino mixing with improved IceCube DeepCore calibration and data processing
  • 2023
  • In: Physical Review D. - 2470-0010 .- 2470-0029. ; 108:1
  • Journal article (peer-reviewed)abstract
    • We describe a new data sample of IceCube DeepCore and report on the latest measurement of atmospheric neutrino oscillations obtained with data recorded between 2011-2019. The sample includes significant improvements in data calibration, detector simulation, and data processing, and the analysis benefits from a sophisticated treatment of systematic uncertainties, with significantly greater level of detail since our last study. By measuring the relative fluxes of neutrino flavors as a function of their reconstructed energies and arrival directions we constrain the atmospheric neutrino mixing parameters to be sin2θ23=0.51±0.05 and Δm322=2.41±0.07×10-3 eV2, assuming a normal mass ordering. The errors include both statistical and systematic uncertainties. The resulting 40% reduction in the error of both parameters with respect to our previous result makes this the most precise measurement of oscillation parameters using atmospheric neutrinos. Our results are also compatible and complementary to those obtained using neutrino beams from accelerators, which are obtained at lower neutrino energies and are subject to different sources of uncertainties.
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10.
  • Abbasi, R., et al. (author)
  • Search for Continuous and Transient Neutrino Emission Associated with IceCube's Highest-energy Tracks: An 11 yr Analysis
  • 2024
  • In: Astrophysical Journal. - 1538-4357 .- 0004-637X. ; 964:1
  • Journal article (peer-reviewed)abstract
    • IceCube alert events are neutrinos with a moderate-to-high probability of having astrophysical origin. In this study, we analyze 11 yr of IceCube data and investigate 122 alert events and a selection of high-energy tracks detected between 2009 and the end of 2021. This high-energy event selection (alert events + high-energy tracks) has an average probability of >= 0.5 of being of astrophysical origin. We search for additional continuous and transient neutrino emission within the high-energy events' error regions. We find no evidence for significant continuous neutrino emission from any of the alert event directions. The only locally significant neutrino emission is the transient emission associated with the blazar TXS 0506+056, with a local significance of 3 sigma, which confirms previous IceCube studies. When correcting for 122 test positions, the global p-value is 0.156 and compatible with the background hypothesis. We constrain the total continuous flux emitted from all 122 test positions at 100 TeV to be below 1.2 x 10-15 (TeV cm2 s)-1 at 90% confidence assuming an E -2 spectrum. This corresponds to 4.5% of IceCube's astrophysical diffuse flux. Overall, we find no indication that alert events in general are linked to lower-energetic continuous or transient neutrino emission.
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  • Result 1-10 of 202
Type of publication
journal article (177)
conference paper (23)
book chapter (1)
Type of content
peer-reviewed (195)
other academic/artistic (6)
Author/Editor
Morse, R. (167)
Halzen, F. (166)
Karle, A. (158)
Spiering, C. (154)
Tilav, S. (153)
Barwick, S. W. (150)
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Price, P. B. (146)
Yodh, G. (146)
Schmidt, T. (144)
Rhode, W. (142)
Rawlins, K. (140)
Bai, X. (139)
Kowalski, M. (138)
Jacobsen, J. (137)
Desiati, P. (136)
Taboada, I. (136)
Madsen, J. (135)
Cowen, D. F. (133)
DeYoung, T. (133)
Hanson, K. (132)
Wiebusch, C. H. (130)
Hill, G. C. (129)
Woschnagg, K. (129)
Chirkin, D. (127)
Spiczak, G. M. (126)
Goldschmidt, A. (124)
De Clercq, C. (123)
Gerhardt, L. (123)
Resconi, E. (122)
Sander, H. G. (121)
Przybylski, G. T. (120)
Stokstad, R. G. (118)
Nygren, D. R. (117)
Bernardini, E. (116)
Hultqvist, K. (116)
Bay, R. (115)
Gaisser, T. K. (115)
Wissing, H. (115)
Stanev, T. (114)
Helbing, K. (113)
Matis, H. S. (113)
Stamatikos, M. (112)
Kolanoski, H. (110)
Hoshina, K. (110)
Montaruli, T. (110)
Olivas, A. (110)
Rott, C. (110)
Ryckbosch, D. (110)
Stezelberger, T. (110)
Yoshida, S. (110)
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University
Uppsala University (117)
Stockholm University (106)
Linnaeus University (68)
Chalmers University of Technology (15)
Karolinska Institutet (12)
Lund University (8)
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Jönköping University (5)
Högskolan Dalarna (5)
University of Gothenburg (4)
Umeå University (3)
Royal Institute of Technology (3)
Red Cross University College (1)
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Language
English (202)
Research subject (UKÄ/SCB)
Natural sciences (180)
Medical and Health Sciences (4)
Engineering and Technology (1)

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