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With significantly improved sensitivity, the Einstein Telescope (ET), along with other upcoming gravitational wave detectors, will mark the beginning of precision gravitational wave astronomy. However, the pursuit of surpassing current…

The Advanced LIGO detectors have recently completed their second observation run successfully. The run lasted for approximately 10 months and lead to multiple new discoveries. The sensitivity to gravitational waves was partially limited by…

Instrumentation and Methods for Astrophysics · Physics 2019-02-27 J. C. Driggers , S. Vitale , A. P. Lundgren , M. Evans , K. Kawabe , S. E. Dwyer , K. Izumi , R. M. S. Schofield , A. Effler , D. Sigg , P. Fritschel , M. Drago , A. Nitz , B. P. Abbott , R. Abbott , T. D. Abbott , C. Adams , R. X Adhikari , V. B. Adya , A. Ananyeva , S. Appert , K. Arai , S. M. Aston , C. Austin , S. W. Ballmer , D. Barker , B. Barr , L. Barsotti , J. Bartlett , I. Bartos , J. C. Batch , A. S. Bell , J. Betzwieser , G. Billingsley , J. Birch , S. Biscans , C. D. Blair , R. M. Blair , R. Bork , A. F. Brooks , H. Cao , G. Ciani , F. Clara , S. J. Cooper , P. Corban , S. T. Countryman , P. B. Covas , M. J. Cowart , D. C. Coyne , A. Cumming , L. Cunningham , K. Danzmann , C. F. Da Silva Costa , E. J. Daw , D. DeBra , R. DeSalvo , K. L. Dooley , S. Doravari , T. B. Edo , T. Etzel , T. M. Evans , H. Fair , A. Fernandez-Galiana , E. C. Ferreira , R. P. Fisher , H. Fong , R. Frey , V. V. Frolov , P. Fulda , M. Fyffe , B. Gateley , J. A. Giaime , K. D. Giardina , E. Goetz , R. Goetz , S. Gras , C. Gray , H. Grote , K. E. Gushwa , E. K. Gustafson , R. Gustafson , E. D. Hall , G. Hammond , J. Hanks , J. Hanson , T. Hardwick , G. M. Harry , M. C. Heintze , A. W. Heptonstall , J. Hough , R. Jones , S. Kandhasamy , S. Karki , M. Kasprzack , S. Kaufer , R. Kennedy , N. Kijbunchoo , W. Kim , E. J. King , P. J. King , J. S. Kissel , W. Z. Korth , G. Kuehn , M. Landry , B. Lantz , M. Laxen , J. Liu , N. A. Lockerbie , M. Lormand , M. MacInnis , D. M. Macleod , S. Marka , Z. Marka , A. S. Markosyan , E. Maros , P. Marsh , I. W. Martin , D. V. Martynov , K. Mason , T. J. Massinger , F. Matichard , N. Mavalvala , R. McCarthy , D. E. McClelland , S. McCormick , L. McCuller , J. McIver , D. J. McManus , T. McRae , G. Mendell , E. L. Merilh , P. M. Meyers , R. Mittleman , K. Mogushi , D. Moraru , G. Moreno , C. M. Mow-Lowry , G. Mueller , N. Mukund , A. Mullavey , J. Munch , T. J. N. Nelson , P. Nguyen , L. K. Nuttall , J. Oberling , M. Oliver , P. Oppermann , Richard J. Oram , B. O'Reilly , D. J. Ottaway , H. Overmier , J. R. Palamos , W. Parker , A. Pele , S. Penn , C. J. Perez , M. Phelps , V. Pierro , I. M. Pinto , M. Pirello , M. Principe , L. G. Prokhorov , O. Puncken , V. Quetschke , E. A. Quintero , H. Radkins , P. Raffai , K. E. Ramirez , S. Reid , D. H. Reitze , N. A. Robertson , J. G. Rollins , V. J. Roma , C. L. Romel , J. H. Romie , M. P. Ross , S. Rowan , K. Ryan , T. Sadecki , E. J. Sanchez , L. E. Sanchez , V. Sandberg , R. L. Savage , D. Sellers , D. A. Shaddock , T. J. Shaffer , B. Shapiro , D. H. Shoemaker , B. J. J. Slagmolen , B. Smith , J. R. Smith , B. Sorazu , A. P. Spencer , K. A. Strain , D. B. Tanner , R. Taylor , M. Thomas , P. Thomas , K. A. Thorne , E. Thrane , K. Toland , C. I. Torrie , G. Traylor , M. Tse , D. Tuyenbayev , G. Vajente , G. Valdes , A. A. van Veggel , S. Vass , A. Vecchio , P. J. Veitch , K. Venkateswara , G. Venugopalan , T. Vo , C. Vorvick , M. Walker , R. L. Ward , J. Warner , B. Weaver , R. Weiss , P. Wessels , B. Willke , C. C. Wipf , J. Worden , H. Yamamoto , C. C. Yancey , Hang Yu , Haocun Yu , L. Zhang , M. E. Zucker , J. Zweizig

Mergers of stellar-mass black holes on highly eccentric orbits are among the targets for ground-based gravitational-wave detectors, including LIGO, VIRGO, and KAGRA. These sources may commonly form through gravitational-wave emission in…

High Energy Astrophysical Phenomena · Physics 2018-03-21 László Gondán , Bence Kocsis , Péter Raffai , Zsolt Frei

Gravitational waves from binary black hole and neutron star mergers are being regularly detected. As of 2021, ninety confident gravitational wave detections have been made by the LIGO and Virgo detectors. Work is ongoing to further increase…

General Relativity and Quantum Cosmology · Physics 2022-03-15 Craig Cahillane , Georgia Mansell

We demonstrate the potential of new adaptive optical technology to expand the detection horizon of gravitational-wave observatories. Achieving greater quantum-noise-limited sensitivity to spacetime strain hinges on achieving higher…

The LIGO-Virgo-KAGRA network in the upcoming A+ era with upgrades of both Advanced LIGO and Advanced Virgo will enable more frequent and precise observations of binary neutron star (BNS) mergers, improving constraints on the neutron star…

General Relativity and Quantum Cosmology · Physics 2025-01-22 Alexis Boudon , Hong Qi , Jean-François Coupechoux , Philippe Landry , Viola Sordini

In this study, we use simple performance metrics to assess the science capabilities of future ground-based gravitational-wave detector networks -- composed of A+ or Voyager upgrades to the LIGO, Virgo, and KAGRA observatories and proposed…

General Relativity and Quantum Cosmology · Physics 2024-11-13 Ssohrab Borhanian , B. S. Sathyaprakash

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

On September 2015, a century after Einstein's predictions of their existence, the first gravitational waves (GWs) direct detection was performed by LIGO. On August 17, 2017, the two Advanced LIGO and the Advanced Virgo interferometers…

Instrumentation and Methods for Astrophysics · Physics 2021-05-20 Catherine Nguyen

The sensitivity of ground-based gravitational wave (GW) detectors will be improved in the future via the injection of frequency-dependent squeezed vacuum. The achievable improvement is ultimately limited by losses of the interferometer…

Instrumentation and Detectors · Physics 2020-06-10 Antonio Perreca , Aidan Brooks , Jonathan Richardson , Daniel Toyra , Rory Smith

Interferometric gravitational-wave detectors like LIGO, GEO600 and Virgo record a surplus of information above and beyond possible gravitational-wave events. These auxiliary channels capture information about the state of the detector and…

Instrumentation and Methods for Astrophysics · Physics 2014-07-29 Reed Essick , Lindy Blackburn , Erik Katsavounidis

The first generation of ground-based interferometric gravitational wave detectors, LIGO, GEO and Virgo, have operated and taken data at their design sensitivities over the last few years. The data has been examined for the presence of…

General Relativity and Quantum Cosmology · Physics 2015-06-15 Marie Anne Bizouard , Maria Alessandra Papa

Extending the sensitivity of terrestrial gravitational-wave detectors below 20 Hz is a long-standing challenge, limited by ground motion and inertial sensing noise. In this letter, we demonstrate ultra-high-vacuum compatible inertial…

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

The worldwide advanced gravitational-wave (GW) detector network has so far primarily consisted of the two Advanced LIGO observatories at Hanford and Livingston, with Advanced Virgo joining the 2016-7 O2 observation run at a relatively late…

High Energy Astrophysical Phenomena · Physics 2020-07-13 Gareth S. Davies , Thomas Dent , Márton Tápai , Ian Harry , Connor McIsaac , Alexander H. Nitz

The global gravitational-wave detector network achieves higher detection rates, better parameter estimates, and more accurate sky localisation, as the number of detectors, $\mathcal{I}$ increases. This paper quantifies network performance…

General Relativity and Quantum Cosmology · Physics 2021-03-31 Yi Shuen C. Lee , Margaret Millhouse , Andrew Melatos

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

Advanced LIGO and Virgo have so far detected gravitational waves from 10 binary black hole mergers (BBH) and 1 binary neutron star merger (BNS). In the future, we expect the detection of many more marginal sources, since compact binary…

General Relativity and Quantum Cosmology · Physics 2019-01-03 Yiwen Huang , Hannah Middleton , Ken K. -Y. Ng , Salvatore Vitale , John Veitch

Nearly a century after Einstein first predicted the existence of gravitational waves, a global network of earth-based gravitational wave observatories is seeking to directly detect this faint radiation using precision laser interferometry.…

Quantum Physics · Physics 2013-10-02 The LIGO Scientific Collaboration

The KAGRA Collaboration has investigated a ten-year upgrade strategy for the KAGRA gravitational wave detector, considering a total of 14 upgrade options that vary in mirror mass, quantum noise reduction techniques, and the quality of…

General Relativity and Quantum Cosmology · Physics 2025-08-06 KAGRA Collaboration , T. Akutsu , M. Ando , M. Aoumi , A. Araya , Y. Aso , L. Baiotti , R. Bajpai , K. Cannon , A. H. -Y. Chen , D. Chen , H. Chen , A. Chiba , C. Chou , M. Eisenmann , K. Endo , T. Fujimori , S. Garg , D. Haba , S. Haino , R. Harada , H. Hayakawa , K. Hayama , S. Fujii , Y. Himemoto , N. Hirata , C. Hirose , H. -F. Hsieh , H. -Y. Hsieh , C. Hsiung , S. -H. Hsu , K. Ide , R. Iden , S. Ikeda , H. Imafuku , R. Ishikawa , Y. Itoh , M. Iwaya , H-B. Jin , K. Jung , T. Kajita , I. Kaku , M. Kamiizumi , N. Kanda , H. Kato , T. Kato , R. Kawamoto , S. Kim , C. Kim , K. Kobayashi , K. Kohri , K. Kokeyama , K. Komori , A. K. H. Kong , T. Koyama , J. Kume , S. Kuroyanagi , S. Kuwahara , K. Kwak , S. Kwon , H. W. Lee , R. Lee , S. Lee , K. L. Li , L. C. -C. Lin , E. -T. -Lin , Y. -C. Lin , G. C. Liu , K. Maeda , M. Meyer-Conde , Y. Michimura , K. Mitsuhashi , O. Miyakawa , S. Miyoki , S. Morisaki , Y. Moriwaki , M. Murakoshi , K. Nakagaki , K. Nakamura , H. Nakano , T. Narikawa , L. Naticchioni , L. Nguyen Quynh , Y. Nishino , A. Nishizawa , K. Obayashi , M. Ohashi , M. Onishi , K. Oohara , S. Oshino , R. Ozaki , M. A. Page , K. -C. Pan , B. -J. Park , J. Park , F. E. Pena Arellano , N. Ruhama , S. Saha , K. Sakai , Y. Sakai , R. Sato , S. Sato , Y. Sato , Y. Sato , T. Sawada , Y. Sekiguchi , N. Sembo , L. Shao , Z. -H. Shi , R. Shimomura , H. Shinkai , S. Singh , K. Somiya , I. Song , H. Sotani , Y. Sudo , K. Suzuki , M. Suzuki , H. Tagoshi , K. Takada , H. Takahashi , R. Takahashi , A. Takamori , S. Takano , H. Takeda , K. Takeshita , M. Tamaki , K. Tanaka , S. J. Tanaka , A. Taruya , T. Tomaru , T. Tomura , S. Tsuchida , N. Uchikata , T. Uchiyama , T. Uehara , K. Ueno , T. Ushiba , H. Wang , T. Washimi , C. Wu , H. Wu , K. Yamamoto , T. Yamamoto , T. S. Yamamoto , R. Yamazaki , Y. Yang , S. -W. Yeh , J. Yokoyama , T. Yokozawa , H. Yuzurihara , Z. -C. Zhao , X. Zhu , Z. -H. Zhu