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All-sky, all-frequency directional search for persistent gravitational waves from Advanced LIGO's and Advanced Virgo's first three observing runs

  • (LIGO Scientific Collaboration, the Virgo Collaboration, and the KAGRA Collaboration)
  • , R. Abbott
  • , T. D. Abbott
  • , F. Acernese
  • , K. Ackley
  • , C. Adams
  • , N. Adhikari
  • , R. X. Adhikari
  • , V. B. Adya
  • , C. Affeldt
  • , D. Agarwal
  • , M. Agathos
  • , K. Agatsuma
  • , N. Aggarwal
  • , O. D. Aguiar
  • , L. Aiello
  • , A. Ain
  • , P. Ajith
  • , T. Akutsu
  • , S. Albanesi
  • A. Allocca, P. A. Altin, A. Amato, C. Anand, S. Anand, A. Ananyeva, S. B. Anderson, W. G. Anderson, M. Ando, T. Andrade, N. Andres, T. Andrić, S. V. Angelova, S. Ansoldi, J. M. Antelis, S. Antier, S. Appert, Koji Arai, Koya Arai, Y. Arai, S. Araki, A. Araya, M. C. Araya, J. S. Areeda, M. Arène, N. Aritomi, N. Arnaud, S. M. Aronson, K. G. Arun, H. Asada, Y. Asali, G. Ashton, Y. Aso, M. Assiduo, S. M. Aston, P. Astone, F. Aubin, C. Austin, S. Babak, F. Badaracco, M. K.M. Bader, C. Badger, S. Bae, Y. Bae, A. M. Baer, S. Bagnasco, Y. Bai, L. Baiotti, J. Baird, R. Bajpai, M. Ball, G. Ballardin, S. W. Ballmer, A. Balsamo, G. Baltus, S. Banagiri, D. Bankar, J. C. Barayoga, C. Barbieri, B. C. Barish, D. Barker, P. Barneo, F. Barone, B. Barr, L. Barsotti, M. Barsuglia, D. Barta, J. Bartlett, M. A. Barton, I. Bartos, R. Bassiri, A. Basti, M. Bawaj, J. C. Bayley, A. C. Baylor, M. Bazzan, B. Bécsy, V. M. Bedakihale, M. Bejger, I. Belahcene, V. Benedetto, D. Beniwal, T. F. Bennett, J. D. Bentley, M. Benyaala, F. Bergamin, B. K. Berger, S. Bernuzzi, D. Bersanetti, A. Bertolini, J. Betzwieser, D. Beveridge, R. Bhandare, U. Bhardwaj, D. Bhattacharjee, S. Bhaumik, I. A. Bilenko, G. Billingsley, S. Bini, R. Birney, O. Birnholtz, S. Biscans, M. Bischi, S. Biscoveanu, A. Bisht, B. Biswas, M. Bitossi, M. A. Bizouard, J. K. Blackburn, C. D. Blair, D. G. Blair, R. M. Blair, F. Bobba, N. Bode, M. Boer, G. Bogaert, M. Boldrini, L. D. Bonavena, F. Bondu, E. Bonilla, R. Bonnand, P. Booker, B. A. Boom, R. Bork, V. Boschi, N. Bose, S. Bose, V. Bossilkov, V. Boudart, Y. Bouffanais, A. Bozzi, C. Bradaschia, P. R. Brady, A. Bramley, A. Branch, M. Branchesi, J. E. Brau, M. Breschi, T. Briant, J. H. Briggs, A. Brillet, M. Brinkmann, P. Brockill, A. F. Brooks, J. Brooks, D. D. Brown, S. Brunett, G. Bruno, R. Bruntz, J. Bryant, T. Bulik, H. J. Bulten, A. Buonanno, R. Buscicchio, D. Buskulic, C. Buy, R. L. Byer, L. Cadonati, G. Cagnoli, C. Cahillane, J. Calderón Bustillo, J. D. Callaghan, T. A. Callister, E. Calloni, J. Cameron, J. B. Camp, M. Canepa, S. Canevarolo, M. Cannavacciuolo, K. C. Cannon, H. Cao, Z. Cao, E. Capocasa, E. Capote, G. Carapella, F. Carbognani, J. B. Carlin, M. F. Carney, M. Carpinelli, G. Carrillo, G. Carullo, T. L. Carver, J. Casanueva Diaz, C. Casentini, G. Castaldi, S. Caudill, M. Cavaglià, F. Cavalier, R. Cavalieri, M. Ceasar, G. Cella, P. Cerdá-Durán, E. Cesarini, W. Chaibi, K. Chakravarti, S. Chalathadka Subrahmanya, E. Champion, C. H. Chan, C. L. Chan, C. L. Chan, K. Chan, M. Chan, K. Chandra, P. Chanial, S. Chao, P. Charlton, E. A. Chase, E. Chassande-Mottin, C. Chatterjee, Debarati Chatterjee, Deep Chatterjee, M. Chaturvedi, S. Chaty, C. Chen, H. Y. Chen, J. Chen, K. Chen, X. Chen, Y. B. Chen, Y. R. Chen, Z. Chen, H. Cheng, C. K. Cheong, H. Y. Cheung, H. Y. Chia, F. Chiadini, C. Y. Chiang, G. Chiarini, R. Chierici, A. Chincarini, M. L. Chiofalo
  • California Institute of Technology
  • Louisiana State University
  • Salerno
  • Complesso Universitario di Monte Sant'Angelo
  • Monash University
  • LIGO Livingston Observatory
  • University of Wisconsin-Milwaukee
  • Australian National University
  • Max Planck Institute for Gravitational Physics (Albert Einstein Institute)
  • Leibniz Universität Hannover
  • The Inter-University Centre for Astronomy and Astrophysics
  • University of Cambridge
  • Friedrich Schiller Universität
  • University of Birmingham
  • Northwestern University
  • Instituto Nacional de Pesquisas Espaciais
  • Cardiff University
  • INFN
  • Tata Institute of Fundamental Research
  • National Astronomical Observatory of Japan
  • INFN Sezione di Torino
  • Complesso Universitario di Monte S.Angelo
  • Université Claude Bernard Lyon 1
  • University of Tokyo
  • University of Barcelona
  • CNRS/IN2P3
  • Gran Sasso Science Institute
  • University of Strathclyde
  • Università di Udine
  • Sezione di Trieste
  • Embry-Riddle Aeronautical University
  • Université de Paris
  • High Energy Accelerator Research Organization (KEK)
  • California State University
  • Université Paris-Saclay
  • European Gravitational Observatory (EGO)
  • Chennai Mathematical Institute
  • Hirosaki University
  • Columbia University in the City of New York
  • The Graduate University for Advanced Studies
  • Università degli Studi di Urbino Carlo Bo
  • Sezione di Firenze
  • Gran Sasso Science Institute
  • University of Louvain
  • Science Park
  • King's College London
  • Korea Institute of Science and Technology Information
  • National Institute Mathematical Sciences
  • Christopher Newport University
  • Osaka University
  • University of Oregon
  • Syracuse University
  • University of Liege
  • University of Minnesota Twin Cities
  • Università Degli Studi di Milano-Bicocca
  • Gruppo Collegato di Parma
  • INAF-Osservatorio Astronomico di Brera
  • LIGO Hanford Observatory
  • Dipartimento di Medicina, Chirurgia e Odontoiatria “Scuola Medica Salernitana"
  • University of Glasgow
  • LIGO, Massachusetts Institute of Technology
  • Institute for Particle and Nuclear Physics
  • University of Florida
  • Stanford University
  • Università di Pisa
  • INFN
  • Università di Perugia
  • University of Padua
  • Montana State University
  • Institute for Plasma Research India
  • Nicolaus Copernicus Astronomical Center of the Polish Academy of Sciences
  • University of Sannio at Benevento
  • University of Adelaide
  • University of Western Australia
  • RRCAT
  • Astronomical Institute Anton Pannekoek
  • Missouri University of Science and Technology
  • Lomonosov Moscow State University
  • Dipartimento di Fisica
  • Trento Institute for Fundamental Physics and Applications
  • University of the West of Scotland
  • Bar-Ilan University
  • Observatoire de la Côte d'Azur
  • Università di Roma la Sapienza
  • Centre National de la Recherche Scientifique
  • Indian Institute of Technology Bombay
  • Laboratori Nazionali del Gran Sasso
  • Université Pierre et Marie Curie
  • Astronomical Observatory Warsaw University
  • University of Maryland
  • Université Paul Sabatier - Toulouse 3
  • Georgia Institute of Technology
  • University of Santiago de Compostela
  • Chinese University of Hong Kong
  • Stony Brook University
  • Flatiron Institute
  • NASA/Goddard Space Flight Center
  • Università degli Studi di Genova
  • Utrecht University
  • Beijing Normal University
  • University of Melbourne
  • Università degli Studi di Sassari
  • Laboratori Nazionali Del Sud (LNS)
  • Università di Roma Tor Vergata
  • Sezione di Roma Tor Vergata
  • Villanova University
  • University of Valencia
  • Universität Hamburg
  • Rochester Institute of Technology
  • National Tsing Hua University
  • Fukuoka University
  • Tamkang University
  • National Central University Taiwan
  • Academia Sinica, Institute Of Physics

Research output: Contribution to journalArticlepeer-review

Abstract

We present the first results from an all-sky all-frequency (ASAF) search for an anisotropic stochastic gravitational-wave background using the data from the first three observing runs of the Advanced LIGO and Advanced Virgo detectors. Upper limit maps on broadband anisotropies of a persistent stochastic background were published for all observing runs of the LIGO-Virgo detectors. However, a broadband analysis is likely to miss narrowband signals as the signal-to-noise ratio of a narrowband signal can be significantly reduced when combined with detector output from other frequencies. Data folding and the computationally efficient analysis pipeline, PyStoch, enable us to perform the radiometer map-making at every frequency bin. We perform the search at 3072 HEALPix equal area pixels uniformly tiling the sky and in every frequency bin of width 1/32 Hz in the range 20-1726 Hz, except for bins that are likely to contain instrumental artefacts and hence are notched. We do not find any statistically significant evidence for the existence of narrowband gravitational-wave signals in the analyzed frequency bins. Therefore, we place 95% confidence upper limits on the gravitational-wave strain for each pixel-frequency pair, the limits are in the range (0.030-9.6)×10-24. In addition, we outline a method to identify candidate pixel-frequency pairs that could be followed up by a more sensitive (and potentially computationally expensive) search, e.g., a matched-filtering-based analysis, to look for fainter nearly monochromatic coherent signals. The ASAF analysis is inherently independent of models describing any spectral or spatial distribution of power. We demonstrate that the ASAF results can be appropriately combined over frequencies and sky directions to successfully recover the broadband directional and isotropic results.
Original languageEnglish
Article number122001
Pages (from-to)1-23
Number of pages23
JournalPhysical Review D
Volume105
Issue number12
DOIs
Publication statusPublished - 09 Jun 2022

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