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Träfflista för sökning "WFRF:(Foley K) "

Search: WFRF:(Foley K)

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1.
  • 2021
  • swepub:Mat__t
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  • Glasbey, JC, et al. (author)
  • 2021
  • swepub:Mat__t
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  • 2021
  • swepub:Mat__t
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8.
  • Adrian-Martinez, S., et al. (author)
  • A first search for coincident gravitational waves and high energy neutrinos using LIGO, Virgo and ANTARES data from 2007
  • 2013
  • In: Journal of Cosmology and Astroparticle Physics. - : IOP Publishing. - 1475-7516. ; :6
  • Journal article (peer-reviewed)abstract
    • We present the results of the first search for gravitational wave bursts associated with high energy neutrinos. Together, these messengers could reveal new, hidden sources that are not observed by conventional photon astronomy, particularly at high energy. Our search uses neutrinos detected by the underwater neutrino telescope ANTARES in its 5 line configuration during the period January - September 2007, which coincided with the fifth and first science runs of LIGO and Virgo, respectively. The LIGO-Virgo data were analysed for candidate gravitational-wave signals coincident in time and direction with the neutrino events. No significant coincident events were observed. We place limits on the density of joint high energy neutrino - gravitational wave emission events in the local universe, and compare them with densities of merger and core-collapse events.
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9.
  • Evans, P. A., et al. (author)
  • Swift Follow-up Observations of Candidate Gravitational-wave Transient Events
  • 2012
  • In: The Astrophysical Journal Supplement Series. - : American Astronomical Society. - 0067-0049 .- 1538-4365. ; 203:2
  • Journal article (peer-reviewed)abstract
    • We present the first multi-wavelength follow-up observations of two candidate gravitational-wave (GW) transient events recorded by LIGO and Virgo in their 2009-2010 science run. The events were selected with low latency by the network of GW detectors (within less than 10 minutes) and their candidate sky locations were observed by the Swift observatory (within 12 hr). Image transient detection was used to analyze the collected electromagnetic data, which were found to be consistent with background. Off-line analysis of the GW data alone has also established that the selected GW events show no evidence of an astrophysical origin; one of them is consistent with background and the other one was a test, part of a "blind injection challenge." With this work we demonstrate the feasibility of rapid follow-ups of GW transients and establish the sensitivity improvement joint electromagnetic and GW observations could bring. This is a first step toward an electromagnetic follow-up program in the regime of routine detections with the advanced GW instruments expected within this decade. In that regime, multi-wavelength observations will play a significant role in completing the astrophysical identification of GW sources. We present the methods and results from this first combined analysis and discuss its implications in terms of sensitivity for the present and future instruments.
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10.
  • Aasi, J., et al. (author)
  • Einstein@Home all-sky search for periodic gravitational waves in LIGO S5 data
  • 2013
  • In: Physical Review D (Particles, Fields, Gravitation and Cosmology). - 1550-2368. ; 87:4
  • Journal article (peer-reviewed)abstract
    • This paper presents results of an all-sky search for periodic gravitational waves in the frequency range [50, 1190] Hz and with frequency derivative range of similar to[-20, 1.1] x 10(-10) Hz s(-1) for the fifth LIGO science run (S5). The search uses a noncoherent Hough-transform method to combine the information from coherent searches on time scales of about one day. Because these searches are very computationally intensive, they have been carried out with the Einstein@Home volunteer distributed computing project. Postprocessing identifies eight candidate signals; deeper follow-up studies rule them out. Hence, since no gravitational wave signals have been found, we report upper limits on the intrinsic gravitational wave strain amplitude h(0). For example, in the 0.5 Hz-wide band at 152.5 Hz, we can exclude the presence of signals with h(0) greater than 7.6 x 10(-25) at a 90% confidence level. This search is about a factor 3 more sensitive than the previous Einstein@Home search of early S5 LIGO data.
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  • Result 1-10 of 126
Type of publication
journal article (111)
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book chapter (2)
reports (1)
Type of content
peer-reviewed (113)
other academic/artistic (10)
Author/Editor
Li, J. (18)
Zhang, L. (17)
Rest, A. (16)
Abbott, T. D. (16)
Wang, X. (15)
Yamamoto, K. (15)
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Thomas, P. (15)
Brau, J. E. (14)
Chen, Y. (14)
Kim, H. (14)
Liu, Y. (14)
Oh, S. H. (14)
Seifert, F. (14)
Yang, H. (14)
Zhang, F. (14)
Mori, T. (14)
Engel, R. (14)
Ivanov, A. (14)
Klimenko, S. (14)
McCarthy, R. (14)
Smith, J. R. (14)
Liu, Z. (14)
Mitselmakher, G. (14)
Franc, J. (14)
Bose, S. (14)
Colla, A. (14)
Gupta, R. (14)
Milano, L. (14)
Brinkmann, M. (14)
Brisson, V. (14)
Miller, J. (14)
Yoshida, S. (14)
Gehrels, N. (14)
Bartos, I. (14)
Marka, S. (14)
Marka, Z. (14)
Abadie, J. (14)
Abbott, B. P. (14)
Abbott, R. (14)
Abernathy, M. (14)
Accadia, T. (14)
Acernese, F. (14)
Adams, C. (14)
Affeldt, C. (14)
Ajith, P. (14)
Allen, B. (14)
Ceron, E. Amador (14)
Amariutei, D. (14)
Anderson, S. B. (14)
Anderson, W. G. (14)
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Stockholm University (44)
Karolinska Institutet (35)
Lund University (24)
Uppsala University (16)
Royal Institute of Technology (14)
Chalmers University of Technology (9)
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Umeå University (8)
University of Gothenburg (7)
Luleå University of Technology (2)
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Halmstad University (1)
Örebro University (1)
Stockholm School of Economics (1)
University of Skövde (1)
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Language
English (126)
Research subject (UKÄ/SCB)
Natural sciences (76)
Medical and Health Sciences (20)
Engineering and Technology (7)
Social Sciences (1)

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