English
Related papers

Related papers: A method for detecting gravitational waves coincid…

200 papers

We assess the detection prospects of a gravitational wave background associated with sub-luminous gamma-ray bursts (SL-GRBs). We assume that the central engines of a significant proportion of these bursts are provided by newly born…

High Energy Astrophysical Phenomena · Physics 2015-05-19 E. Howell , T. Regimbau , A. Corsi , D. Coward , R. Burman

Gravitational Waves (GWs) are tiny ripples in the fabric of space-time predicted by Einstein's General Relativity. Pulsar timing arrays (PTAs) are well poised to detect low frequency ($10^{-9}$ -- $10^{-7}$ Hz) GWs in the near future. There…

Instrumentation and Methods for Astrophysics · Physics 2015-06-04 J. A. Ellis , F. A. Jenet , M. A. McLaughlin

The observational follow-up campaign of the gravitational wave (GW) multi-messenger event GW170817/GRB170817A has shown that the prompt $\gamma$-rays are consistent with a relativistic structured jet observed from a wide viewing angle…

High Energy Astrophysical Phenomena · Physics 2019-06-19 E. J. Howell , K. Ackley , A. Rowlinson , D. Coward

The collection of individually resolvable gravitational wave (GW) events makes up a tiny fraction of all GW signals which reach our detectors, while most lie below the confusion limit and go undetected. Like voices in a crowded room, the…

General Relativity and Quantum Cosmology · Physics 2022-03-02 Arianna I. Renzini , Boris Goncharov , Alexander C. Jenkins , Pat M. Meyers

Recently, some theoretical models predicted that a small fraction of fast radio bursts (FRBs) could be associated with gravitational waves (GWs). In this work, we discuss the possibility of using GW/FRB association systems, if commonly…

Cosmology and Nongalactic Astrophysics · Physics 2018-06-27 Jun-Jie Wei , Xue-Feng Wu , He Gao

Gravitational waves (GWs) are fluctuations in the fabric of spacetime predicted by Einstein's theory of general relativity. Using a collection of millisecond pulsars as high-precision clocks, the nanohertz band of this radiation is likely…

Cosmology and Nongalactic Astrophysics · Physics 2019-08-13 P. Demorest , J. Lazio , A. Lommen

The main technique that has been used to estimate the rate of gravitational wave (gw) bursts is to search for coincidence among times of arrival of candidate events in different detectors. Coincidences are modeled as a (possibly…

Astrophysics · Physics 2014-10-13 Lucio Baggio , Giovanni A. Prodi

In this work, we propose a novel experimental set-up using charged resonant gravitational wave detectors. We exploit the semi-classical analogue of the Gertsenshtein effect where the gravitational wave acts as an modulator for the…

General Relativity and Quantum Cosmology · Physics 2026-04-07 Soham Sen

The direct detection of gravitational waves (GWs) is an invaluable new tool to probe gravity and the nature of cosmic acceleration. A large class of scalar-tensor theories predict that GWs propagate with velocity different than the speed of…

General Relativity and Quantum Cosmology · Physics 2017-04-19 Dario Bettoni , Jose María Ezquiaga , Kurt Hinterbichler , Miguel Zumalacárregui

Gamma-ray bursts (GRBs) are a potential tool to probe high-redshift universe. However, the circularity problem enforces people to find model-independent methods to study the luminosity correlations of GRBs. Here, we present a new method…

High Energy Astrophysical Phenomena · Physics 2019-03-06 Yu-Yang Wang , F. Y. Wang

In the next decade, new astrophysical instruments will deliver the first large-scale maps of gravitational waves and radio sources. Therefore, it is timely to investigate the possibility to combine them to provide new and complementary ways…

Cosmology and Nongalactic Astrophysics · Physics 2017-07-19 Alvise Raccanelli

Einstein's General Theory of Relativity predicted the existence of gravitational waves (GWs), which offer a way to explore cosmic events like binary mergers and could help resolve the Hubble Tension. The Hubble Tension refers to the…

General Relativity and Quantum Cosmology · Physics 2025-01-07 Rishav Laloo , Prachi Gupta , Arun Kenath

The detection of gravitational waves from astrophysical sources of gravitational waves is a realistic goal for the current generation of interferometric gravitational-wave detectors. Short duration bursts of gravitational waves from…

General Relativity and Quantum Cosmology · Physics 2009-11-10 Patrick R Brady , Saikat Ray-Majumder

We describe a coherent network algorithm for detection and reconstruction of gravitational wave bursts. The algorithm works for two and more arbitrarily aligned detectors and can be used for both all-sky and triggered burst searches. We…

General Relativity and Quantum Cosmology · Physics 2008-11-26 S. Klimenko , I. Yakushin , A. Mercer , G. Mitselmakher

We present the results of a search for gravitational-wave bursts associated with 137 gamma-ray bursts (GRBs) that were detected by satellite-based gamma-ray experiments during the fifth LIGO science run and first Virgo science run. The data…

High Energy Astrophysical Phenomena · Physics 2015-03-13 LIGO Scientific Collaboration , Virgo Collaboration , B. P. Abbott , R. Abbott , F. Acernese , R. Adhikari , P. Ajith , B. Allen , G. Allen , M. Alshourbagy , R. S. Amin , S. B. Anderson , W. G. Anderson , F. Antonucci , S. Aoudia , M. A. Arain , M. Araya , H. Armandula , P. Armor , K. G. Arun , Y. Aso , S. Aston , P. Astone , P. Aufmuth , C. Aulbert , S. Babak , P. Baker , G. Ballardin , S. Ballmer , C. Barker , D. Barker , F. Barone , B. Barr , P. Barriga , L. Barsotti , M. Barsuglia , M. A. Barton , I. Bartos , R. Bassiri , M. Bastarrika , Th. S. Bauer , B. Behnke , M. Beker , M. Benacquista , J. Betzwieser , P. T. Beyersdorf , S. Bigotta , I. A. Bilenko , G. Billingsley , S. Birindelli , R. Biswas , M. A. Bizouard , E. Black , J. K. Blackburn , L. Blackburn , D. Blair , B. Bland , C. Boccara , T. P. Bodiya , L. Bogue , F. Bondu , L. Bonelli , R. Bork , V. Boschi , S. Bose , L. Bosi , S. Braccini , C. Bradaschia , P. R. Brady , V. B. Braginsky , J. E. Brau , D. O. Bridges , A. Brillet , M. Brinkmann , V. Brisson , C. Van Den Broeck , A. F. Brooks , D. A. Brown , A. Brummit , G. Brunet , R. Budzyński , T. Bulik , A. Bullington , H. J. Bulten , A. Buonanno , O. Burmeister , D. Buskulic , R. L. Byer , L. Cadonati , G. Cagnoli , E. Calloni , J. B. Camp , E. Campagna , J. Cannizzo , K. C. Cannon , B. Canuel , J. Cao , F. Carbognani , L. Cardenas , S. Caride , G. Castaldi , S. Caudill , M. Cavaglià , F. Cavalier , R. Cavalieri , G. Cella , C. Cepeda , E. Cesarini , T. Chalermsongsak , E. Chalkley , P. Charlton , E. Chassande-Mottin , S. Chatterji , S. Chelkowski , Y. Chen , A. Chincarini , N. Christensen , C. T. Y. Chung , D. Clark , J. Clark , J. H. Clayton , F. Cleva , E. Coccia , T. Cokelaer , C. N. Colacino , J. Colas , A. Colla , M. Colombini , R. Conte , D. Cook , T. R. C. Corbitt , C. Corda , N. Cornish , A. Corsi , J. -P. Coulon , D. Coward , D. C. Coyne , J. D. E. Creighton , T. D. Creighton , A. M. Cruise , R. M. Culter , A. Cumming , L. Cunningham , E. Cuoco , S. L. Danilishin , S. D'Antonio , K. Danzmann , A. Dari , V. Dattilo , B. Daudert , M. Davier , G. Davies , E. J. Daw , R. Day , R. De Rosa , D. DeBra , J. Degallaix , M. del Prete , V. Dergachev , S. Desai , R. DeSalvo , S. Dhurandhar , L. Di Fiore , A. Di Lieto , M. Di Paolo Emilio , A. Di Virgilio , M. Díaz , A. Dietz , F. Donovan , K. L. Dooley , E. E. Doomes , M. Drago , R. W. P. Drever , J. Dueck , I. Duke , J. -C. Dumas , J. G. Dwyer , C. Echols , M. Edgar , M. Edwards , A. Effler , P. Ehrens , E. Espinoza , T. Etzel , M. Evans , T. Evans , V. Fafone , S. Fairhurst , Y. Faltas , Y. Fan , D. Fazi , H. Fehrmann , I. Ferrante , F. Fidecaro , L. S. Finn , I. Fiori , R. Flaminio , K. Flasch , S. Foley , C. Forrest , N. Fotopoulos , J. -D. Fournier , J. Franc , A. Franzen , S. Frasca , F. Frasconi , M. Frede , M. Frei , Z. Frei , A. Freise , R. Frey , T. Fricke , P. Fritschel , V. V. Frolov , M. Fyffe , V. Galdi , L. Gammaitoni , J. A. Garofoli , F. Garufi , G. Gemme , E. Genin , A. Gennai , I. Gholami , J. A. Giaime , S. Giampanis , K. D. Giardina , A. Giazotto , K. Goda , E. Goetz , L. M. Goggin , G. González , M. L. Gorodetsky , S. Goeßzetler , S. Goßler , R. Gouaty , M. Granata , V. Granata , A. Grant , S. Gras , C. Gray , M. Gray , R. J. S. Greenhalgh , A. M. Gretarsson , C. Greverie , F. Grimaldi , R. Grosso , H. Grote , S. Grunewald , M. Guenther , G. Guidi , E. K. Gustafson , R. Gustafson , B. Hage , J. M. Hallam , D. Hammer , G. D. Hammond , C. Hanna , J. Hanson , J. Harms , G. M. Harry , I. W. Harry , E. D. Harstad , K. Haughian , K. Hayama , J. Heefner , H. Heitmann , P. Hello , I. S. Heng , A. Heptonstall , M. Hewitson , S. Hild , E. Hirose , D. Hoak , K. A. Hodge , K. Holt , D. J. Hosken , J. Hough , D. Hoyland , D. Huet , B. Hughey , S. H. Huttner , D. R. Ingram , T. Isogai , M. Ito , A. Ivanov , P. Jaranowski , B. Johnson , W. W. Johnson , D. I. Jones , G. Jones , R. Jones , L. Sancho de la Jordana , L. Ju , P. Kalmus , V. Kalogera , S. Kandhasamy , J. Kanner , D. Kasprzyk , E. Katsavounidis , K. Kawabe , S. Kawamura , F. Kawazoe , W. Kells , D. G. Keppel , A. Khalaidovski , F. Y. Khalili , R. Khan , E. Khazanov , P. King , J. S. Kissel , S. Klimenko , K. Kokeyama , V. Kondrashov , R. Kopparapu , S. Koranda , I. Kowalska , D. Kozak , B. Krishnan , A. Królak , R. Kumar , P. Kwee , P. La Penna , P. K. Lam , M. Landry , B. Lantz , A. Lazzarini , H. Lei , M. Lei , N. Leindecker , I. Leonor , N. Leroy , N. Letendre , C. Li , H. Lin , P. E. Lindquist , T. B. Littenberg , N. A. Lockerbie , D. Lodhia , M. Longo , M. Lorenzini , V. Loriette , M. Lormand , G. Losurdo , P. Lu , M. Lubinski , A. Lucianetti , H. Lück , B. Machenschalk , M. MacInnis , J. -M. Mackowski , M. Mageswaran , K. Mailand , E. Majorana , N. Man , I. Mandel , V. Mandic , M. Mantovani , F. Marchesoni , F. Marion , S. Márka , Z. Márka , A. Markosyan , J. Markowitz , E. Maros , J. Marque , F. Martelli , I. W. Martin , R. M. Martin , J. N. Marx , K. Mason , A. Masserot , F. Matichard , L. Matone , R. A. Matzner , N. Mavalvala , R. McCarthy , D. E. McClelland , S. C. McGuire , M. McHugh , G. McIntyre , D. J. A. McKechan , K. McKenzie , M. Mehmet , A. Melatos , A. C. Melissinos , G. Mendell , D. F. Menéndez , F. Menzinger , R. A. Mercer , S. Meshkov , C. Messenger , M. S. Meyer , C. Michel , L. Milano , J. Miller , J. Minelli , Y. Minenkov , Y. Mino , V. P. Mitrofanov , G. Mitselmakher , R. Mittleman , O. Miyakawa , B. Moe , M. Mohan , S. D. Mohanty , S. R. P. Mohapatra , J. Moreau , G. Moreno , N. Morgado , A. Morgia , T. Morioka , K. Mors , S. Mosca , V. Moscatelli , K. Mossavi , B. Mours , C. MowLowry , G. Mueller , D. Muhammad , H. zur Mühlen , S. Mukherjee , H. Mukhopadhyay , A. Mullavey , H. Müller-Ebhardt , J. Munch , P. G. Murray , E. Myers , J. Myers , T. Nash , J. Nelson , I. Neri , G. Newton , A. Nishizawa , F. Nocera , K. Numata , E. Ochsner , J. O'Dell , G. H. Ogin , B. O'Reilly , R. O'Shaughnessy , D. J. Ottaway , R. S. Ottens , H. Overmier , B. J. Owen , G. Pagliaroli , C. Palomba , Y. Pan , C. Pankow , F. Paoletti , M. A. Papa , V. Parameshwaraiah , S. Pardi , A. Pasqualetti , R. Passaquieti , D. Passuello , P. Patel , M. Pedraza , S. Penn , A. Perreca , G. Persichetti , M. Pichot , F. Piergiovanni , V. Pierro , M. Pietka , L. Pinard , I. M. Pinto , M. Pitkin , H. J. Pletsch , M. V. Plissi , R. Poggiani , F. Postiglione , M. Prato , M. Principe , R. Prix , G. A. Prodi , L. Prokhorov , O. Punken , M. Punturo , P. Puppo , V. Quetschke , F. J. Raab , O. Rabaste , D. S. Rabeling , H. Radkins , P. Raffai , Z. Raics , N. Rainer , M. Rakhmanov , P. Rapagnani , V. Raymond , V. Re , C. M. Reed , T. Reed , T. Regimbau , H. Rehbein , S. Reid , D. H. Reitze , F. Ricci , R. Riesen , K. Riles , B. Rivera , P. Roberts , N. A. Robertson , F. Robinet , C. Robinson , E. L. Robinson , A. Rocchi , S. Roddy , L. Rolland , J. Rollins , J. D. Romano , R. Romano , J. H. Romie , D. Rosińska , C. Röver , S. Rowan , A. Rüdiger , P. Ruggi , P. Russell , K. Ryan , S. Sakata , F. Salemi , V. Sandberg , V. Sannibale , L. Santamaría , S. Saraf , P. Sarin , B. Sassolas , B. S. Sathyaprakash , S. Sato , M. Satterthwaite , P. R. Saulson , R. Savage , P. Savov , M. Scanlan , R. Schilling , R. Schnabel , R. Schofield , B. Schulz , B. F. Schutz , P. Schwinberg , J. Scott , S. M. Scott , A. C. Searle , B. Sears , F. Seifert , D. Sellers , A. S. Sengupta , D. Sentenac , A. Sergeev , B. Shapiro , P. Shawhan , D. H. Shoemaker , A. Sibley , X. Siemens , D. Sigg , S. Sinha , A. M. Sintes , B. J. J. Slagmolen , J. Slutsky , M. V. van der Sluys , J. R. Smith , M. R. Smith , N. D. Smith , K. Somiya , B. Sorazu , A. Stein , L. C. Stein , S. Steplewski , A. Stochino , R. Stone , K. A. Strain , S. Strigin , A. Stroeer , R. Sturani , A. L. Stuver , T. Z. Summerscales , K. -X. Sun , M. Sung , Patrick J. Sutton , B. Swinkels , G. P. Szokoly , D. Talukder , L. Tang , D. B. Tanner , S. P. Tarabrin , J. R. Taylor , R. Taylor , R. Terenzi , J. Thacker , K. A. Thorne , K. S. Thorne , A. Thüring , K. V. Tokmakov , A. Toncelli , M. Tonelli , C. Torres , C. Torrie , E. Tournefier , F. Travasso , G. Traylor , M. Trias , J. Trummer , D. Ugolini , J. Ulmen , K. Urbanek , H. Vahlbruch , G. Vajente , M. Vallisneri , J. F. J. van den Brand , S. van der Putten , S. Vass , R. Vaulin , M. Vavoulidis , A. Vecchio , G. Vedovato , A. A. van Veggel , J. Veitch , P. Veitch , C. Veltkamp , D. Verkindt , F. Vetrano , A. Viceré , A. Villar , J. -Y. Vinet , H. Vocca , C. Vorvick , S. P. Vyachanin , S. J. Waldman , L. Wallace , R. L. Ward , M. Was , A. Weidner , M. Weinert , A. J. Weinstein , R. Weiss , L. Wen , S. Wen , K. Wette , J. T. Whelan , S. E. Whitcomb , B. F. Whiting , C. Wilkinson , P. A. Willems , H. R. Williams , L. Williams , B. Willke , I. Wilmut , L. Winkelmann , W. Winkler , C. C. Wipf , A. G. Wiseman , G. Woan , R. Wooley , J. Worden , W. Wu , I. Yakushin , H. Yamamoto , Z. Yan , S. Yoshida , M. Yvert , M. Zanolin , J. Zhang , L. Zhang , C. Zhao , N. Zotov , M. E. Zucker , J. Zweizig

The inspiral and merger of two orbiting black holes is among the most promising sources for the first (hopefully imminent) direct detection of gravitational waves (GWs), and measurements of these signals could provide a wealth of…

General Relativity and Quantum Cosmology · Physics 2015-06-18 Mark Hannam

Cosmological gamma ray bursts are very likely powerful sources of high energy neutrinos and gravitational waves. The aim of this paper is to review and update the current predictions about the intensity of emission in this two forms to be…

Astrophysics · Physics 2007-05-23 Giulio Auriemma

Trying to detect the gravitational wave (GW) signal emitted by a type II supernova is a main challenge for the GW community. Indeed, the corresponding waveform is not accurately modeled as the supernova physics is very complex; in addition,…

A successful experiment combining emission and reception of gravitational waves (GWs) would constitute a premiere of gravity control. However, such experiments manipulating gravity would require to compactly store large amounts of energy…

General Relativity and Quantum Cosmology · Physics 2021-08-24 A. Füzfa

Various models for electromagnetic emissions correlated with the gravitational wave signals expected to be detectable by the current and planned gravitational wave detectors are studied. The position error on the location of a gravitational…

Astrophysics · Physics 2009-11-07 Julien Sylvestre