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  4. All-sky search for short gravitational-wave bursts in the third Advanced LIGO and Advanced Virgo run
 
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All-sky search for short gravitational-wave bursts in the third Advanced LIGO and Advanced Virgo run

Source
Physical Review D
ISSN
24700010
Date Issued
2021-12-15
Author(s)
Abbott, R.
Abbott, T. D.
Acernese, F.
Ackley, K.
Adams, C.
Adhikari, N.
Adhikari, R. X.
Adya, V. B.
Affeldt, C.
Agarwal, D.
Agathos, M.
Agatsuma, K.
Aggarwal, N.
Aguiar, O. D.
Aiello, L.
Ain, A.
Ajith, P.
Akutsu, T.
Albanesi, S.
Allocca, A.
Altin, P. A.
Amato, A.
Anand, C.
Anand, S.
Ananyeva, A.
Anderson, S. B.
Anderson, W. G.
Ando, M.
Andrade, T.
Andres, N.
Andrić, T.
Angelova, S. V.
Ansoldi, S.
Antelis, J. M.
Antier, S.
Appert, S.
Arai, Koji
Arai, Koya
Arai, Y.
Araki, S.
Araya, A.
Araya, M. C.
Areeda, J. S.
Arène, M.
Aritomi, N.
Arnaud, N.
Aronson, S. M.
Arun, K. G.
Asada, H.
Asali, Y.
Ashton, G.
Aso, Y.
Assiduo, M.
Aston, S. M.
Astone, P.
Aubin, F.
Austin, C.
Babak, S.
Badaracco, F.
Bader, M. K.M.
Badger, C.
Bae, S.
Bae, Y.
Baer, A. M.
Bagnasco, S.
Bai, Y.
Baiotti, L.
Baird, J.
Bajpai, R.
Ball, M.
Ballardin, G.
Ballmer, S. W.
Balsamo, A.
Baltus, G.
Banagiri, S.
Bankar, D.
Barayoga, J. C.
Barbieri, C.
Barish, B. C.
Barker, D.
Barneo, P.
Barone, F.
Barr, B.
Barsotti, L.
Barsuglia, M.
Barta, D.
Bartlett, J.
Barton, M. A.
Bartos, I.
Bassiri, R.
Basti, A.
Bawaj, M.
Bayley, J. C.
Baylor, A. C.
Bazzan, M.
Bécsy, B.
Bedakihale, V. M.
Bejger, M.
Belahcene, I.
Benedetto, V.
DOI
10.1103/PhysRevD.104.122004
Volume
104
Issue
12
Abstract
This paper presents the results of a search for generic short-duration gravitational-wave transients in data from the third observing run of Advanced LIGO and Advanced Virgo. Transients with durations of milliseconds to a few seconds in the 24-4096 Hz frequency band are targeted by the search, with no assumptions made regarding the incoming signal direction, polarization, or morphology. Gravitational waves from compact binary coalescences that have been identified by other targeted analyses are detected, but no statistically significant evidence for other gravitational wave bursts is found. Sensitivities to a variety of signals are presented. These include updated upper limits on the source rate density as a function of the characteristic frequency of the signal, which are roughly an order of magnitude better than previous upper limits. This search is sensitive to sources radiating as little as ∼10-10 Mc2 in gravitational waves at ∼70 Hz from a distance of 10 kpc, with 50% detection efficiency at a false alarm rate of one per century. The sensitivity of this search to two plausible astrophysical sources is estimated: neutron star f modes, which may be excited by pulsar glitches, as well as selected core-collapse supernova models.
Publication link
http://link.aps.org/pdf/10.1103/PhysRevD.104.122004
URI
http://repository.iitgn.ac.in/handle/IITG2025/26347
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