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  4. Implementation of an F-statistic all-sky search for continuous gravitational waves in Virgo VSR1 data
 
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Implementation of an F-statistic all-sky search for continuous gravitational waves in Virgo VSR1 data

Source
Classical and Quantum Gravity
ISSN
02649381
Date Issued
2014-08-21
Author(s)
Aasi, J.
Abbott, B. P.
Abbott, R.
Abbott, T.
Abernathy, M. R.
Accadia, T.
Acernese, F.
Ackley, K.
Adams, C.
Adams, T.
Addesso, P.
Adhikari, R. X.
Affeldt, C.
Agathos, M.
Aggarwal, N.
Aguiar, O. D.
Ain, A.
Ajith, P.
Alemic, A.
Allen, B.
Allocca, A.
Amariutei, D.
Andersen, M.
Anderson, R.
Anderson, S. B.
Anderson, W. G.
Arai, K.
Araya, M. C.
Arceneaux, C.
Areeda, J.
Aston, S. M.
Astone, P.
Aufmuth, P.
Aulbert, C.
Austin, L.
Aylott, B. E.
Babak, S.
Baker, P. T.
Ballardin, G.
Ballmer, S. W.
Barayoga, J. C.
Barbet, M.
Barish, B. C.
Barker, D.
Barone, F.
Barr, B.
Barsotti, L.
Barsuglia, M.
Barton, M. A.
Bartos, I.
Bassiri, R.
Basti, A.
Batch, J. C.
Bauchrowitz, J.
Bauer, Th S.
Behnke, B.
Bejger, M.
Beker, M. G.
Belczynski, C.
Bell, A. S.
Bell, C.
Bergmann, G.
Bersanetti, D.
Bertolini, A.
Betzwieser, J.
Beyersdorf, P. T.
Bilenko, I. A.
Billingsley, G.
Birch, J.
Biscans, S.
Bitossi, M.
Bizouard, M. A.
Black, E.
Blackburn, J. K.
Blackburn, L.
Blair, D.
Bloemen, S.
Blom, M.
Bock, O.
Bodiya, T. P.
Boer, M.
Bogaert, G.
Bogan, C.
Bond, C.
Bondu, F.
Bonelli, L.
Bonnand, R.
Bork, R.
Born, M.
Borkowski, K.
Boschi, V.
Bose, Sukanta
Bosi, L.
Bradaschia, C.
Brady, P. R.
Braginsky, V. B.
Branchesi, M.
Brau, J. E.
Briant, T.
Bridges, D. O.
DOI
10.1088/0264-9381/31/16/165014
Volume
31
Issue
16
Abstract
We present an implementation of the F-statistic to carry out the first search in data from the Virgo laser interferometric gravitational wave detector for periodic gravitational waves from a priori unknown, isolated rotating neutron stars. We searched a frequency f0 range from 100 Hz to 1 kHz and the frequency dependent spindown f<inf>1</inf> range from -1.6(f<inf>0</inf>/100 Hz) ×10<sup>-9</sup> Hz s<sup>?1</sup> to zero. A large part of this frequencyspindown space was unexplored by any of the all-sky searches published so far. Our method consisted of a coherent search over two-day periods using the F-statistic, followed by a search for coincidences among the candidates from the two-day segments. We have introduced a number of novel techniques and algorithms that allow the use of the fast Fourier transform (FFT) algorithm in the coherent part of the search resulting in a fifty-fold speed-up in computation of the F-statistic with respect to the algorithm used in the other pipelines. No significant gravitational wave signal was found. The sensitivity of the search was estimated by injecting signals into the data. In the most sensitive parts of the detector band more than 90% of signals would have been detected with dimensionless gravitationalwave amplitude greater than 5 ×10<sup>?24</sup>. © 2014 IOP Publishing Ltd.
Publication link
https://iopscience.iop.org/article/10.1088/0264-9381/31/16/165014/pdf
URI
https://d8.irins.org/handle/IITG2025/21242
Subjects
data analysis: algorithms and implementation | gravitational radiation detectors | gravitational waves | pulsars
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