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We present a new method which accounts for changes in the properties of gravitational-wave detector noise over time in the PyCBC search for gravitational waves from compact binary coalescences. We use information from LIGO data quality…

General Relativity and Quantum Cosmology · Physics 2022-12-07 Derek Davis , Max Trevor , Simone Mozzon , Laura K. Nuttall

Multimessenger astronomy incorporating gravitational radiation is a new and exciting field that will potentially provide significant results and exciting challenges in the near future. With advanced interferometric gravitational wave…

General Relativity and Quantum Cosmology · Physics 2019-08-13 N. L. Christensen

Significant progress has been made in recent years on the development of gravitational wave detectors. Sources such as coalescing compact binary systems, neutron stars in low-mass X-ray binaries, stellar collapses and pulsars are all…

Instrumentation and Methods for Astrophysics · Physics 2015-05-27 Matthew Pitkin , Stuart Reid , Sheila Rowan , Jim Hough

Sources of geophysical noise (such as wind, sea waves and earthquakes) or of anthropogenic noise impact ground-based gravitational-wave interferometric detectors, causing transient sensitivity worsening and gaps in data taking. During the…

General Relativity and Quantum Cosmology · Physics 2023-01-05 F. Acernese , M. Agathos , A. Ain , S. Albanesi , A. Allocca , A. Amato , T. Andrade , N. Andres , M. Andrés-Carcasona , T. Andrić , S. Ansoldi , S. Antier , T. Apostolatos , E. Z. Appavuravther , M. Arène , N. Arnaud , M. Assiduo , S. Assis de Souza Melo , P. Astone , F. Aubin , T. Avgitas , S. Babak , F. Badaracco , M. K. M. Bader , S. Bagnasco , J. Baird , T. Baka , G. Ballardin , G. Baltus , B. Banerjee , C. Barbieri , P. Barneo , F. Barone , M. Barsuglia , D. Barta , A. Basti , M. Bawaj , M. Bazzan , F. Beirnaert , M. Bejger , I. Belahcene , V. Benedetto , M. Berbel , S. Bernuzzi , D. Bersanetti , A. Bertolini , U. Bhardwaj , A. Bianchi , S. Bini , M. Bischi , M. Bitossi , M. -A. Bizouard , F. Bobba , M. Boër , G. Bogaert , M. Boldrini , L. D. Bonavena , F. Bondu , R. Bonnand , B. A. Boom , V. Boschi , V. Boudart , Y. Bouffanais , A. Bozzi , C. Bradaschia , M. Branchesi , M. Breschi , T. Briant , A. Brillet , J. Brooks , G. Bruno , F. Bucci , T. Bulik , H. J. Bulten , D. Buskulic , C. Buy , G. Cabras , R. Cabrita , G. Cagnoli , E. Calloni , M. Canepa , S. Canevarolo , M. Cannavacciuolo , E. Capocasa , G. Carapella , F. Carbognani , E. Caredda , M. Carpinelli , G. Carullo , J. Casanueva Diaz , C. Casentini , S. Caudill , F. Cavalier , R. Cavalieri , G. Cella , P. Cerdá-Durán , E. Cesarini , W. Chaibi , P. Chanial , E. Chassande-Mottin , S. Chaty , F. Chiadini , G. Chiarini , R. Chierici , A. Chincarini , M. L. Chiofalo , A. Chiummo , N. Christensen , G. Ciani , P. Ciecielag , M. Cieślar , M. Cifaldi , R. Ciolfi , F. Cipriano , S. Clesse , F. Cleva , E. Coccia , E. Codazzo , P. -F. Cohadon , D. E. Cohen , A. Colombo , M. Colpi , L. Conti , I. Cordero-Carrión , S. Corezzi , D. Corre , S. Cortese , M. Coughlin , J. -P. Coulon , M. Croquette , J. R. Cudell , E. Cuoco , M. Curyło , P. Dabadie , T. Dal Canton , S. Dall'Osso , G. Dálya , B. D'Angelo , S. Danilishin , S. D'Antonio , V. Dattilo , M. Davier , J. Degallaix , M. De Laurentis , S. Deléglise , F. De Lillo , D. Dell'Aquila , W. Del Pozzo , F. De Matteis , A. Depasse , R. De Pietri , R. De Rosa , C. De Rossi , R. De Simone , L. Di Fiore , C. Di Giorgio , F. Di Giovanni , M. Di Giovanni , T. Di Girolamo , A. Di Lieto , A. Di Michele , S. Di Pace , I. Di Palma , F. Di Renzo , L. D'Onofrio , M. Drago , J. -G. Ducoin , U. Dupletsa , O. Durante , D. D'Urso , P. -A. Duverne , M. Eisenmann , L. Errico , D. Estevez , F. Fabrizi , F. Faedi , V. Fafone , S. Farinon , G. Favaro , M. Fays , E. Fenyvesi , I. Ferrante , F. Fidecaro , P. Figura , A. Fiori , I. Fiori , R. Fittipaldi , V. Fiumara , R. Flaminio , J. A. Font , S. Frasca , F. Frasconi , A. Freise , O. Freitas , G. G. Fronzé , R. Gamba , B. Garaventa , F. Garufi , G. Gemme , A. Gennai , Archisman Ghosh , B. Giacomazzo , L. Giacoppo , P. Giri , F. Gissi , C. Giunchi , S. Gkaitatzis , B. Goncharov , M. Gosselin , R. Gouaty , A. Grado , M. Granata , V. Granata , G. Greco , G. Grignani , A. Grimaldi , S. J. Grimm , P. Gruning , D. Guerra , G. M. Guidi , G. Guixé , Y. Guo , P. Gupta , L. Haegel , O. Halim , O. Hannuksela , T. Harder , K. Haris , J. Harms , B. Haskell , A. Heidmann , H. Heitmann , P. Hello , G. Hemming , E. Hennes , S. Hild , D. Hofman , V. Hui , B. Idzkowski , A. Iess , P. Iosif , T. Jacqmin , P. -E. Jacquet , J. Janquart , K. Janssens , P. Jaranowski , V. Juste , C. Kalaghatgi , C. Karathanasis , S. Katsanevas , F. Kéfélian , N. Khetan , G. Koekoek , S. Koley , M. Kolstein , A. Królak , P. Kuijer , P. Lagabbe , D. Laghi , M. Lalleman , A. Lamberts , I. La Rosa , A. Lartaux-Vollard , C. Lazzaro , P. Leaci , A. Lemaître , M. Lenti , E. Leonova , N. Leroy , N. Letendre , K. Leyde , F. Linde , L. London , A. Longo , M. Lopez Portilla , M. Lorenzini , V. Loriette , G. Losurdo , D. Lumaca , A. Macquet , C. Magazzù , M. Magnozzi , E. Majorana , I. Maksimovic , N. Man , V. Mangano , M. Mantovani , M. Mapelli , F. Marchesoni , D. Marín Pina , F. Marion , A. Marquina , S. Marsat , J. Marteau , F. Martelli , M. Martinez , V. Martinez , A. Masserot , S. Mastrogiovanni , Q. Meijer , A. Menendez-Vazquez , L. Mereni , M. Merzougui , A. Miani , C. Michel , L. Milano , A. Miller , B. Miller , E. Milotti , Y. Minenkov , Ll. M. Mir , M. Miravet-Tenés , M. Montani , F. Morawski , B. Mours , C. M. Mow-Lowry , F. Muciaccia , Suvodip Mukherjee , N. Mukund , R. Musenich , A. Nagar , V. Napolano , I. Nardecchia , H. Narola , L. Naticchioni , J. Neilson , C. Nguyen , S. Nissanke , E. Nitoglia , F. Nocera , G. Oganesyan , C. Olivetto , M. Olivieri , G. Pagano , G. Pagliaroli , C. Palomba , P. T. H. Pang , F. Pannarale , F. Paoletti , A. Paoli , A. Paolone , G. Pappas , D. Pascucci , A. Pasqualetti , R. Passaquieti , D. Passuello , B. Patricelli , R. Pedurand , M. Pegoraro , A. Perego , A. Pereira , C. Périgois , A. Perreca , S. Perriès , D. Pesios , K. S. Phukon , O. J. Piccinni , M. Pichot , M. Piendibene , F. Piergiovanni , L. Pierini , V. Pierro , G. Pillant , M. Pillas , F. Pilo , L. Pinard , I. M. Pinto , M. Pinto , K. Piotrzkowski , A. Placidi , E. Placidi , W. Plastino , R. Poggiani , E. Polini , E. K. Porter , R. Poulton , M. Pracchia , T. Pradier , M. Principe , G. A. Prodi , P. Prosposito , A. Puecher , M. Punturo , F. Puosi , P. Puppo , G. Raaijmakers , N. Radulesco , P. Rapagnani , M. Razzano , T. Regimbau , L. Rei , P. Rettegno , B. Revenu , A. Reza , F. Ricci , G. Riemenschneider , S. Rinaldi , F. Robinet , A. Rocchi , L. Rolland , M. Romanelli , R. Romano , A. Romero , S. Ronchini , L. Rosa , D. Rosińska , S. Roy , D. Rozza , P. Ruggi , O. S. Salafia , L. Salconi , F. Salemi , A. Samajdar , N. Sanchis-Gual , A. Sanuy , B. Sassolas , S. Sayah , S. Schmidt , M. Seglar-Arroyo , D. Sentenac , V. Sequino , Y. Setyawati , A. Sharma , N. S. Shcheblanov , M. Sieniawska , L. Silenzi , N. Singh , A. Singha , V. Sipala , J. Soldateschi , V. Sordini , F. Sorrentino , N. Sorrentino , R. Soulard , V. Spagnuolo , M. Spera , P. Spinicelli , C. Stachie , D. A. Steer , J. Steinlechner , S. Steinlechner , N. Stergioulas , G. Stratta , M. Suchenek , A. Sur , B. L. Swinkels , P. Szewczyk , M. Tacca , A. J. Tanasijczuk , E. N. Tapia San Martín , C. Taranto , K. Thorne , M. Tonelli , A. Torres-Forné , I. Tosta e Melo , A. Trapananti , F. Travasso , M. C. Tringali , L. Troiano , A. Trovato , L. Trozzo , K. W. Tsang , K. Turbang , M. Turconi , A. Utina , M. Valentini , N. van Bakel , M. van Beuzekom , M. van Dael , J. F. J. van den Brand , C. Van Den Broeck , H. van Haevermaet , J. V. van Heijningen , N. van Remortel , M. Vardaro , M. Vasúth , G. Vedovato , D. Verkindt , P. Verma , F. Vetrano , A. Viceré , J. -Y. Vinet , A. Virtuoso , H. Vocca , R. C. Walet , M. Was , A. Zadrożny , T. Zelenova , J. -P. Zendri

The observation of transient gravitational waves is hindered by the presence of transient noise, colloquially referred to as glitches. These glitches can often be misidentified as gravitational waves by searches for unmodeled transients…

General Relativity and Quantum Cosmology · Physics 2023-05-16 Siddharth Soni , Ethan Marx , Erik Katsavounidis , Reed Essick , G. S. Cabourn Davies , Patrick Brockill , Michael W. Coughlin , Shaon Ghosh , Patrick Godwin

Gravitational waves (GWs) can be distorted by intervening mass distributions while propagating, leading to frequency-dependent modulations that imprint a distinct signature on the observed waveforms. Bayesian inference for GW lensing with…

General Relativity and Quantum Cosmology · Physics 2026-01-15 Juno C. L. Chan , Lorena Magaña Zertuche , Jose María Ezquiaga , Rico K. L. Lo , Luka Vujeva , Joey Bowman

Gravitational wave data from ground-based detectors is dominated by instrument noise. Signals will be comparatively weak, and our understanding of the noise will influence detection confidence and signal characterization. Mis-modeled noise…

General Relativity and Quantum Cosmology · Physics 2015-04-22 Tyson B. Littenberg , Neil J. Cornish

The detection of gravitational waves has opened unparalleled opportunities for observing the universe, particularly through the study of black hole inspirals. These events serve as unique laboratories to explore the laws of physics under…

General Relativity and Quantum Cosmology · Physics 2024-10-22 Beka Modrekiladze

We propose a non-Gaussianity test for gravitational wave backgrounds by combining data streams of multiple detectors. This simple method allows us to check whether a detected background is "smooth" enough to be consistent with an…

Astrophysics · Physics 2009-11-13 Naoki Seto

Dynamical effects in general relativity have been finally, relatively recently observed by LIGO\cite{2016LRR....19....1A}. To be able to measure these signals, great care has to be taken to minimize all sources of noise in the detector. One…

High Energy Physics - Theory · Physics 2022-03-10 Victor Massart , M. B. Paranjape

Currently, the sub-60 Hz sensitivity of gravitational-wave (GW) detectors like Advanced LIGO is limited by the control noises from auxiliary degrees of freedom, which nonlinearly couple to the main GW readout. One particularly promising way…

Instrumentation and Methods for Astrophysics · Physics 2021-11-08 Hang Yu , Rana X. Adhikari

A detection of a core-collapse supernova signal with an Advanced LIGO and Virgo gravitational-wave detector network will allow us to measure astrophysical parameters of the source. In real advanced gravitational-wave detector data there are…

High Energy Astrophysical Phenomena · Physics 2018-01-03 Jade Powell , Marek Szczepanczyk , Ik Siong Heng

The number of astrophysical sources detected by Advanced LIGO and Virgo is expected to increase as the detectors approach their design sensitivity. Gravitational wave detectors are also sensitive to transient noise sources created by the…

Instrumentation and Methods for Astrophysics · Physics 2018-07-25 Jade Powell

Gravitational waves (GW) emitted by binary systems allow us to perform precision tests of general relativity in the strong field regime. Ringdown signals allow for probing black hole mass and spin with high precision in GW astronomy. With…

General Relativity and Quantum Cosmology · Physics 2026-03-13 Song-Tao Liu , Tian-Yang Sun , Yu-Xin Wang , Yong-Xin Zhang , Shang-Jie Jin , Jing-Fei Zhang , Xin Zhang

The LIGO and Virgo detectors are sensitive to a variety of noise sources, such as instrumental artifacts and environmental disturbances. The Stochastic Transient Analysis Multi-detector Pipeline (STAMP) has been developed to search for…

General Relativity and Quantum Cosmology · Physics 2015-05-30 LIGO Scientific Collaboration , Virgo Collaboration , Michael W. Coughlin

The Kamioka Gravitational wave detector (KAGRA) cryogenic gravitational-wave observatory has commenced joint observations with the worldwide gravitational wave detector network. Precise calibration of the detector response is essential for…

The LIGO experiment aims to detect and study gravitational waves using ground based laser interferometry. A critical factor to the performance of the interferometers, and a major consideration in the design of possible future upgrades, is…

General Relativity and Quantum Cosmology · Physics 2009-11-10 E. J. Daw , J. A. Giaime , D. Lormand , M. Lubinski , J. Zweizig

The direct detection of gravitational waves now provides a new channel of testing gravity theories. Despite that the parametrized post-Einsteinian framework is a powerful tool to quantitatively investigate effects of modification of gravity…

General Relativity and Quantum Cosmology · Physics 2019-11-07 Kei Yamada , Tatsuya Narikawa , Takahiro Tanaka

We show that gravitational-wave signals from compact binary mergers may be better distinguished from instrumental noise transients by using Bayesian models that look for signal coherence across a detector network. This can be achieved even…

General Relativity and Quantum Cosmology · Physics 2018-08-30 Maximiliano Isi , Rory Smith , Salvatore Vitale , T. J. Massinger , Jonah Kanner , Avi Vajpeyi

Gravitational wave signals from coalescing compact binaries in the LIGO and Virgo interferometers are primarily detected by the template based matched filtering method. While this method is optimal for stationary and Gaussian data…

General Relativity and Quantum Cosmology · Physics 2024-09-16 Chayan Chatterjee , Karan Jani