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We propose a coherent method for the detection and reconstruction of gravitational wave signals for a network of interferometric detectors. The method is derived using the likelihood functional for unknown signal waveforms. In the standard…

General Relativity and Quantum Cosmology · Physics 2008-11-26 S. Klimenko , S. Mohanty , M. Rakhmanov , G. Mitselmakher , .

Coincident observations with gravitational wave (GW) detectors and other astronomical instruments are in the focus of the experiments with the network of LIGO, Virgo and GEO detectors. They will become a necessary part of the future GW…

Instrumentation and Methods for Astrophysics · Physics 2011-05-25 S. Klimenko , G. Vedovato , M. Drago , G. Mazzolo , G. Mitselmakher , C. Pankow , G. Prodi , V. Re , F. Salemi , I. Yakushin

The search procedure for burst gravitational waves has been studied using 24 hours of simulated data in a network of three interferometers (Hanford 4-km, Livingston 4-km and Virgo 3-km are the example interferometers). Several methods to…

The Laser Interferometer Gravitational wave Observatory (LIGO) and Virgo, advanced ground-based gravitational-wave detectors, will begin collecting science data in 2015. With first detections expected to follow, it is important to quantify…

High Energy Astrophysical Phenomena · Physics 2015-05-11 Reed Essick , Salvatore Vitale , Erik Katsavounidis , Gabriele Vedovato , Sergey Klimenko

The expansion and upgrade of the global network of ground-based gravitational wave detectors promises to improve our capacity to infer the sky-localization of transient sources, enabling more effective multi-messenger follow-ups. At the…

General Relativity and Quantum Cosmology · Physics 2024-04-29 Mattia Emma , Tiago Fernandes de Nobrega , Gregory Ashton

In this article we study two problems that arise when using timing and amplitude estimates from a network of interferometers (IFOs) to evaluate the direction of an incident gravitational wave burst (GWB). First, we discuss an angular bias…

General Relativity and Quantum Cosmology · Physics 2009-01-08 J. Markowitz , M. Zanolin , L. Cadonati , E. Katsavounidis

We derive an expression for the accuracy with which sources can be localized using a network of gravitational wave detectors. The result is obtained via triangulation, using timing accuracies at each detector and is applicable to a network…

General Relativity and Quantum Cosmology · Physics 2012-12-18 Stephen Fairhurst

The Advanced Laser Interferometer Gravitational-wave Observatory (LIGO) discovered gravitational waves (GWs) from a binary black hole merger in 2015 September and may soon observe signals from neutron star mergers. There is considerable…

The Virgo detector is a kilometer-scale interferometer for gravitational wave detection located near Pisa (Italy). About 13 months of data were accumulated during four science runs (VSR1, VSR2, VSR3 and VSR4) between May 2007 and September…

General Relativity and Quantum Cosmology · Physics 2014-08-07 Virgo collaboration , T. Accadia , F. Acernese , M. Agathos , A. Allocca , P. Astone , G. Ballardin , F. Barone , M. Barsuglia , A. Basti , Th. S. Bauer , M. Bejger , M . G. Beker , C. Belczynski , D. Bersanetti , A. Bertolini , M. Bitossi , M. A. Bizouard , M. Blom , M. Boer , F. Bondu , L. Bonelli , R. Bonnand , V. Boschi , L. Bosi , C. Bradaschia , M. Branchesi , T. Briant , A. Brillet , V. Brisson , T. Bulik , H. J. Bulten , D. Buskulic , C. Buy , G. Cagnoli , E. Calloni , B. Canuel , F. Carbognani , F. Cavalier , R. Cavalieri , G. Cella , E. Cesarini , E. Chassande-Mottin , A. Chincarini , A. Chiummo , F. Cleva , E. Coccia , P. -F. Cohadon , A. Colla , M. Colombini , A. Conte , J. -P. Coulon , E. Cuoco , S. D'Antonio , V. Dattilo , M. Davier , R. Day , G. Debreczeni , J. Degallaix , S. Deléglise , W. Del Pozzo , H. Dereli , R. De Rosa , L. Di Fiore , A. Di Lieto , A. Di Virgilio , M. Drago , G. Endrőczi , V. Fafone , S. Farinon , I. Ferrante , F. Ferrini , F. Fidecaro , I. Fiori , R. Flaminio , J. -D. Fournier , S. Franco , S. Frasca , F. Frasconi , L. Gammaitoni , F. Garufi , G. Gemme , E. Genin , A. Gennai , A. Giazotto , R. Gouaty , M. Granata , P. Groot , G. M. Guidi , A. Heidmann , H. Heitmann , P. Hello , G. Hemming , P. Jaranowski , R. J. G. Jonker , M. Kasprzack , F. Kéfélian , I. Kowalska , A. Królak , A. Kutynia , C. Lazzaro , M. Leonardi , N. Leroy , N. Letendre , T. G. F. Li , M. Lorenzini , V. Loriette , G. Losurdo , E. Majorana , I. Maksimovic , V. Malvezzi , N. Man , V. Mangano , M. Mantovani , F. Marchesoni , F. Marion , J. Marque , F. Martelli , L. Martinelli , A. Masserot , D. Meacher , J. Meidam , C. Michel , L. Milano , Y. Minenkov , M. Mohan , N. Morgado , B. Mours , M. F. Nagy , I. Nardecchia , L. Naticchioni , G. Nelemans , I. Neri , M. Neri , F. Nocera , C. Palomba , F. Paoletti , R. Paoletti , A. Pasqualetti , R. Passaquieti , D. Passuello , M. Pichot , F. Piergiovanni , L. Pinard , R. Poggiani , M. Prijatelj , G. A. Prodi , M. Punturo , P. Puppo , D. S. Rabeling , I. Rácz , P. Rapagnani , V. Re , T. Regimbau , F. Ricci , F. Robinet , A. Rocchi , L. Rolland , R. Romano , D. Rosińska , P. Ruggi , E. Saracco , B. Sassolas , D. Sentenac , V. Sequino , S. Shah , K. Siellez , L. Sperandio , N. Straniero , R. Sturani , B. Swinkels , M. Tacca , A. P. M. ter Braack , A. Toncelli , M. Tonelli , O. Torre , F. Travasso , G. Vajente , J. F. J. van den Brand , C. Van Den Broeck , S. van der Putten , M. V. van der Sluys , J. van Heijningen , M. Vasúth , G. Vedovato , J. Veitch , D. Verkindt , F. Vetrano , A. Viceré , J. -Y. Vinet , S. Vitale , H. Vocca , L. -W. Wei , M. Yvert , A. Zadrożny , J. -P. Zendri

Based on the prior O1-O2 observing runs, about 30% of the data collected by Advanced LIGO and Virgo in the next observing runs are expected to be single-interferometer data, i.e., they will be collected at times when only one detector in…

Instrumentation and Methods for Astrophysics · Physics 2020-06-14 Marco Cavaglia , Sergio Gaudio , Travis Hansen , Kai Staats , Marek Szczepanczyk , Michele Zanolin

A network of three or more gravitational wave detectors simultaneously taking data is required to generate a well-localized sky map for gravitational wave sources, such as GW170817. Local seismic disturbances often cause the LIGO and Virgo…

Instrumentation and Methods for Astrophysics · Physics 2020-08-10 Ayon Biswas , Jess McIver , Ashish Mahabal

We present a comparative study of 6 search methods for gravitational wave bursts using simulated LIGO and Virgo noise data. The data's spectra were chosen to follow the design sensitivity of the two 4km LIGO interferometers and the 3km…

The inspirals and mergers of compact binaries are among the most promising events for ground-based gravitational-wave (GW) observatories. The detection of electromagnetic (EM) signals from these sources would provide complementary…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-28 Samaya M. Nissanke , Jonathan L. Sievers , Neal Dalal , Daniel E. Holz

We describe how the six planned detectors (2 LIGOs, VIRGO, GEO, AIGO, TAMA) can be used to perform coincidence experiments for the detection of broadband signals from either coalescing compact binaries or burst sources. We make comparisons…

General Relativity and Quantum Cosmology · Physics 2007-05-23 Biplab Bhawal , S. V. Dhurandhar

I explore the possibility of resurrecting an old, non-Bayesian computational approach for inferring the source direction of a gravitational wave from the output of a two-detector network. The method gives the beam pattern response functions…

Instrumentation and Methods for Astrophysics · Physics 2018-05-04 Tom McClain

Virgo is a kilometer-length interferometer for gravitational waves detection located near Pisa. Its first science run, VSR1, occured from May to October 2007. The aims of the calibration are to measure the detector sensitivity and to…

General Relativity and Quantum Cosmology · Physics 2014-11-20 The Virgo collaboration , T. Accadia , F. Acernese , F. Antonucci , S. Aoudia , K. G. Arun , P. Astone , G. Ballardin , F. Barone , M. Barsuglia , Th. S. Bauer , M. G. Beker , A. Belletoile , S. Bigotta , S. Birindelli , M. Bitossi , M. A. Bizouard , M. Blom , C. Boccara , F. Bondu , L. Bonelli , R. Bonnand , L. Bosi , S. Braccini , C. Bradaschia , A. Brillet , V. Brisson , R. Budzynski , T. Bulik , H. J. Bulten , D. Buskulic , C. Buy , G. Cagnoli , E. Calloni , E. Campagna , B. Canuel , F. Carbognani , F. Cavalier , R. Cavalieri , G. Cella , E. Cesarini , E. Chassande-Mottin , A. Chincarini , F. Cleva , E. Coccia , C. N. Colacino , J. Colas , A. Colla , M. Colombini , A. Corsi , J. -P. Coulon , E. Cuoco , S. D'Antonio , A. Dari , V. Dattilo , M. Davier , R. Day , R. De Rosa , M. del Prete , L. Di Fiore , A. Di Lieto , M. Di Paolo Emilio , A. Di Virgilio , A. Dietz , M. Drago , V. Fafone , I. Ferrante , F. Fidecaro , I. Fiori , R. Flaminio , J. -D. Fournier , J. Franc , S. Frasca , F. Frasconi , A. Freise , M. Galimberti , L. Gammaitoni , F. Garufi , G. Gemme , E. Genin , A. Gennai , A. Giazotto , R. Gouaty , M. Granata , C. Greverie , G. M. Guidi , H. Heitmann , P. Hello , S. Hild , D. Huet , P. Jaranowski , I. Kowalska , A. Krolak , N. Leroy , N. Letendre , T. G. F. Li , M. Lorenzini , V. Loriette , G. Losurdo , J. M. Mackowski , E. Majorana , I. Maksimovic , N. Man , M. Mantovani , F. Marchesoni , F. Marion , J. Marque , F. Martelli , A. Masserot , C. Michel , L. Milano , Y. Minenkov , M. Mohan , J. Moreau , N. Morgado , A. Morgia , S. Mosca , V. Moscatelli , B. Mours , I. Neri , F. Nocera , G. Pagliaroli , L. Palladino , C. Palomba , F. Paoletti , S. Pardi , M. Parisi , A. Pasqualetti , R. Passaquieti , D. Passuello , G. Persichetti , M. Pichot , F. Piergiovanni , M. Pietka , L. Pinard , R. Poggiani , M. Prato , G. A. Prodi , M. Punturo , P. Puppo , O. Rabaste , D. S. Rabeling , P. Rapagnani , V. Re , T. Regimbau , F. Ricci , F. Robinet , A. Rocchi , L. Rolland , R. Romano , D. Rosinska , P. Ruggi , B. Sassolas , D. Sentenac , R. Sturani , B. Swinkels , A. Toncelli , M. Tonelli , O. Torre , E. Tournefier , F. Travasso , J. Trummer , G. Vajente , J. F. J. van den Brand , S. van der Putten , M. Vavoulidis , G. Vedovato , D. Verkindt , F. Vetrano , A. Vicere , J. -Y. Vinet , H. Vocca , M. Was , M. Yvert

The sky localization of the gravitational wave (GW) source is an important scientific objective for GW observations. A network of space-based GW detectors dramatically improves the sky localization accuracy compared with an individual…

General Relativity and Quantum Cosmology · Physics 2022-07-06 Chunyu Zhang , Yungui Gong , Chao Zhang

We discuss a fast cross-Wigner transform based technique for detecting gravitational wave bursts, and estimating the direction of arrival, using a network of (three) non co-located interferometric detectors. The performances of the detector…

General Relativity and Quantum Cosmology · Physics 2015-06-03 Rocco P. Croce , Vincenzo Pierro , Fabio Postiglione , Maria Principe , Innocenzo M. Pinto

The detections\citep{KAGRA:2023pio,LIGOScientific:2019lzm} and analysis of gravitational waves(GWs) have introduced us in a new era of our understanding of the cosmos, providing new insights into astrophysical systems involving massive…

General Relativity and Quantum Cosmology · Physics 2025-08-07 Osvaldo M. Moreschi

The data from ground based gravitational-wave detectors such as Advanced LIGO and Virgo must be calibrated to convert the digital output of photodetectors into a relative displacement of the test masses in the detectors, producing the…

General Relativity and Quantum Cosmology · Physics 2021-03-24 Salvatore Vitale , Carl-Johan Haster , Ling Sun , Ben Farr , Evan Goetz , Jeff Kissel , Craig Cahillane
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