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Gravitational wave detectors from the advanced generation onwards are expected to be limited in sensitivity by thermal noise of the optics, making the reduction of this noise a key factor in the success of such detectors. A proposed method…

Instrumentation and Methods for Astrophysics · Physics 2015-06-03 Paul Fulda , Charlotte Bond , Daniel Brown , Frank Brückner , Ludovico Carbone , Simon Chelkowski , Stefan Hild , Keiko Kokeyama , Mengyao Wang , Andreas Freise

Technical and environmental noise in ground-based laser interferometers designed for gravitational-wave observations like Advanced LIGO, Advanced Virgo and KAGRA, can manifest as narrow (<1Hz) or broadband ($10'$s or even $100'$s of Hz)…

General Relativity and Quantum Cosmology · Physics 2025-09-17 Christina Reissel , Siddharth Soni , Muhammed Saleem , Michael Coughlin , Philip Harris , Erik Katsavounidis

Quantum noise limits the sensitivity of precision measurement devices, such as laser interferometer gravitational-wave observatories and axion detectors. In the shot-noise-limited regime, these resonant detectors are subject to a trade-off…

Quantum Physics · Physics 2021-06-16 Xiang Li , Jiri Smetana , Amit Singh Ubhi , Joe Bentley , Yanbei Chen , Yiqiu Ma , Haixing Miao , Denis Martynov

Laser frequency noise is a dominant noise background for the detection of gravitational waves using long-baseline optical interferometry. Amelioration of this noise requires near simultaneous strain measurements on more than one…

Quantum Physics · Physics 2013-04-30 Peter W. Graham , Jason M. Hogan , Mark A. Kasevich , Surjeet Rajendran

Most second-generation gravitational-wave detectors employ an optical resonator called an output mode-cleaner (OMC), which filters out junk light from the signal and the reference light, before it reaches the detection photodiode located at…

Optics · Physics 2020-07-06 Ayaka Kumeta , Charlotte Bond , Kentaro Somiya

With the advent of gravitational wave astronomy, techniques to extend the reach of gravitational wave detectors are desired. In addition to the stellar-mass black hole and neutron star mergers already detected, many more are below the…

Instrumentation and Methods for Astrophysics · Physics 2020-07-22 Rich Ormiston , Tri Nguyen , Michael Coughlin , Rana X. Adhikari , Erik Katsavounidis

With the upgrade from GRAVITY to GRAVITY$^+$ the instrument will evolve into an all-sky interferometer that can observe faint targets, such as high redshift AGN. Observing the faintest targets requires reducing the noise sources in GRAVITY…

KAGRA, the kilometer-scale underground gravitational-wave detector, is located at Kamioka, Japan. In April 2020, an astrophysics observation was performed at the KAGRA detector in combination with the GEO 600 detector; this observation…

Instrumentation and Methods for Astrophysics · Physics 2023-01-24 KAGRA Collaboration , H. Abe , R. X. Adhikari , T. Akutsu , M. Ando , A. Araya , N. Aritomi , H. Asada , Y. Aso , S. Bae , Y. Bae , R. Bajpai , S. W. Ballmer , K. Cannon , Z. Cao , E. Capocasa , M. Chan , C. Chen , D. Chen , K. Chen , Y. Chen , C-Y. Chiang , Y-K. Chu , J. C. Driggers , S. E. Dwyer , A. Effler , S. Eguchi , M. Eisenmann , Y. Enomoto , R. Flaminio , H. K. Fong , V. V. Frolov , Y. Fujii , Y. Fujikawa , Y. Fujimoto , M. Fukushima , D. Gao , G. -G. Ge , S. Ha , I. P. W. Hadiputrawan , S. Haino , W. -B. Han , K. Hasegawa , K. Hattori , H. Hayakawa , K. Hayama , Y. Himemoto , N. Hirata , C. Hirose , T-C. Ho , B-H. Hsieh , H-F. Hsieh , C. Hsiung , H-Y. Huang , P. Huang , Y-C. Huang , Y. -J. Huang , D. C. Y. Hui , S. Ide , B. Ikenoue , K. Inayoshi , Y. Inoue , K. Ito , Y. Itoh , K. Izumi , C. Jeon , H. -B. Jin , K. Jung , P. Jung , K. Kaihotsu , T. Kajita , M. Kakizaki , M. Kamiizumi , N. Kanda , T. Kato , K. Kawabe , K. Kawaguchi , C. Kim , J. Kim , J. C. Kim , Y. -M. Kim , N. Kimura , Y. Kobayashi , K. Kohri , K. Kokeyama , A. K. H. Kong , N. Koyama , C. Kozakai , J. Kume , Y. Kuromiya , S. Kuroyanagi , K. Kwak , E. Lee , H. W. Lee , R. Lee , M. Leonardi , K. L. Li , P. Li , L. C. -C. Lin , C-Y. Lin , E. T. Lin , F-K. Lin , F-L. Lin , H. L. Lin , G. C. Liu , L. -W. Luo , M. Ma'arif , E. Majorana , Y. Michimura , N. Mio , O. Miyakawa , K. Miyo , S. Miyoki , Y. Mori , S. Morisaki , N. Morisue , Y. Moriwaki , A. Mullavey , K. Nagano , K. Nakamura , H. Nakano , M. Nakano , Y. Nakayama , T. Narikawa , L. Naticchioni , L. Nguyen Quynh , W. -T. Ni , T. Nishimoto , A. Nishizawa , S. Nozaki , Y. Obayashi , Y. Obuchi , W. Ogaki , J. J. Oh , K. Oh , M. Ohashi , T. Ohashi , M. Ohkawa , H. Ohta , Y. Okutani , K. Oohara , S. Oshino , S. Otabe , K. -C. Pan , A. Parisi , J. Park , F. E. Peña Arellano , S. Saha , S. Saito , Y. Saito , K. Sakai , T. Sawada , Y. Sekiguchi , L. Shao , Y. Shikano , H. Shimizu , R. Shimizu , K. Shimode , H. Shinkai , T. Shishido , A. Shoda , K. Somiya , I. Song , R. Sugimoto , J. Suresh , T. Suzuki , T. Suzuki , T. Suzuki , H. Tagoshi , H. Takahashi , R. Takahashi , S. Takano , H. Takeda , M. Takeda , M. Tamaki , K. Tanaka , T. Tanaka , T. Tanaka , S. Tanioka , A. Taruya , T. Tomaru , T. Tomura , L. Trozzo , T. Tsang , J-S. Tsao , S. Tsuchida , T. Tsutsui , T. Tsuzuki , D. Tuyenbayev , N. Uchikata , T. Uchiyama , A. Ueda , T. Uehara , K. Ueno , G. Ueshima , F. Uraguchi , T. Ushiba , M. H. P. M. van Putten , J. Wang , T. Washimi , C. Wu , H. Wu , T. Yamada , K. Yamamoto , T. Yamamoto , K. Yamashita , R. Yamazaki , Y. Yang , S. -W. Yeh , J. Yokoyama , T. Yokozawa , T. Yoshioka , H. Yuzurihara , S. Zeidler , M. Zhan , H. Zhang , Y. Zhao , Z. -H. Zhu

Quantum uncertainty of laser light limits the sensitivity of gravitational-wave observatories. In the past 30 years, techniques for squeezing the quantum uncertainty as well as for enhancing the gravitational-wave signal with optical…

Quantum Physics · Physics 2020-01-03 Mikhail Korobko , Yiqiu Ma , Yanbei Chen , Roman Schnabel

We demonstrate how noise can be turned into an advantage for optical sensing using a nonlinear cavity. The cavity is driven by a continuous wave laser into the regime of optical bistability. Due to the influence of fluctuations, the cavity…

Optics · Physics 2020-02-19 Said R. K. Rodriguez

In this paper, we develop a new approach to gravity-gradient noise subtraction for underground gravitational-wave detectors in homogeneous rock. The method is based on spatial harmonic expansions of seismic fields. It is shown that…

General Relativity and Quantum Cosmology · Physics 2009-10-16 Jan Harms , Riccardo DeSalvo , Steven Dorsher , Vuk Mandic

Armstrong et al. have recently presented new ways of combining signals to precisely cancel laser frequency noise in spaceborne interferometric gravitational wave detectors such as LISA. One of these combinations, the symmetrized Sagnac…

Astrophysics · Physics 2014-10-13 Craig J. Hogan , Peter L. Bender

The kilo-Hertz gravitational waves radiated by the neutron star merger remnants carry rich information about the physics of high-density nuclear matter states, and many important astrophysical phenomena such as gamma-ray bursts and black…

General Relativity and Quantum Cosmology · Physics 2022-11-08 Chuming Wang , Chunnong Zhao , Xiang Li , Enping Zhou , Haixing Miao , Yanbei Chen , Yiqiu Ma

Terrestrial gravity noise, also known as Newtonian noise, produced by ambient seismic and infrasound fields will pose one of the main sensitivity limitations in low-frequency, ground-based, gravitational-wave (GW) detectors. It was…

General Relativity and Quantum Cosmology · Physics 2015-07-08 Jan Harms , Ho Jung Paik

The gravitational waveform of merging binary neutron stars encodes information about extreme states of matter. Probing these gravitational emissions requires the gravitational-wave detectors to have high sensitivity above 1 kHz. Fortunately…

General Relativity and Quantum Cosmology · Physics 2018-09-12 Haixing Miao , Huan Yang , Denis Martynov

Longitudinal control signals used to keep gravitational wave detectors at a stable operating point are often affected by modulations from test mass misalignments leading to an elevated noise floor ranging from 50 to 500 Hz. Nonstationary…

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…

Construction of the Japanese second-generation gravitational-wave detector KAGRA has been started. In the next 6 \sim 7 years, we will be able to observe the space-time ripple from faraway galaxies. KAGRA is equipped with the latest…

General Relativity and Quantum Cosmology · Physics 2020-07-06 Kentaro Somiya

KAGRA is a newly built gravitational wave observatory, a laser interferometer with a 3 km arm length, located in Kamioka, Gifu, Japan. In this series of articles, we present an overview of the baseline KAGRA, for which we finished…

General Relativity and Quantum Cosmology · Physics 2021-02-10 T. Akutsu , M. Ando , K. Arai , Y. Arai , S. Araki , A. Araya , N. Aritomi , H. Asada , Y. Aso , S. Bae , Y. Bae , L. Baiotti , R. Bajpai , M. A. Barton , K. Cannon , Z. Cao , E. Capocasa , M. Chan , C. Chen , K. Chen , Y. Chen , C-Y. Chiang , H. Chu , Y-K. Chu , S. Eguchi , Y. Enomoto , R. Flaminio , Y. Fujii , Y. Fujikawa , M. Fukunaga , M. Fukushima , D. Gao , G. Ge , S. Ha , A. Hagiwara , S. Haino , W. -B. Han , K. Hasegawa , K. Hattori , H. Hayakawa , K. Hayama , Y. Himemoto , Y. Hiranuma , N. Hirata , E. Hirose , Z. Hong , B. Hsieh , G-Z. Huang , H-Y. Huang , P. Huang , Y-C. Huang , Y. Huang , D. C. Y. Hui , S. Ide , B. Ikenoue , S. Imam , K. Inayoshi , Y. Inoue , K. Ioka , K. Ito , Y. Itoh , K. Izumi , C. Jeon , H. -B. Jin , K. Jung , P. Jung , K. Kaihotsu , T. Kajita , M. Kakizaki , M. Kamiizumi , N. Kanda , G. Kang , K. Kawaguchi , N. Kawai , T. Kawasaki , C. Kim , J. Kim , J. C. Kim , W. S. Kim , Y. -M. Kim , N. Kimura , N. Kita , H. Kitazawa , Y. Kojima , K. Kokeyama , K. Komori , A. K. H. Kong , K. Kotake , C. Kozakai , R. Kozu , R. Kumar , J. Kume , C. Kuo , H-S. Kuo , Y. Kuromiya , S. Kuroyanagi , K. Kusayanagi , K. Kwak , H. K. Lee , H. W. Lee , R. Lee , M. Leonardi , K. L. Li , L. C. -C. Lin , C-Y. Lin , F-K. Lin , H-L. Lin , H. L. Lin , G. C. Liu , L. -W. Luo , E. Majorana , M. Marchio , Y. Michimura , N. Mio , O. Miyakawa , A. Miyamoto , Y. Miyazaki , K. Miyo , S. Miyoki , Y. Mori , S. Morisaki , Y. Moriwaki , K. Nagano , S. Nagano , K. Nakamura , H. Nakano , M. Nakano , R. Nakashima , Y. Nakayama , T. Narikawa , L. Naticchioni , R. Negishi , L. Nguyen Quynh , W. -T. Ni , A. Nishizawa , S. Nozaki , Y. Obuchi , W. Ogaki , J. J. Oh , K. Oh , S. H. Oh , M. Ohashi , N. Ohishi , M. Ohkawa , H. Ohta , Y. Okutani , K. Okutomi , K. Oohara , C. Ooi , S. Oshino , S. Otabe , K. Pan , H. Pang , A. Parisi , J. Park , F. E. Peña Arellano , I. Pinto , N. Sago , S. Saito , Y. Saito , K. Sakai , Y. Sakai , Y. Sakuno , S. Sato , T. Sato , T. Sawada , T. Sekiguchi , Y. Sekiguchi , L. Shao , S. Shibagaki , R. Shimizu , T. Shimoda , K. Shimode , H. Shinkai , T. Shishido , A. Shoda , K. Somiya , E. J. Son , H. Sotani , R. Sugimoto , J. Suresh , T. Suzuki , T. Suzuki , H. Tagoshi , H. Takahashi , R. Takahashi , A. Takamori , S. Takano , H. Takeda , M. Takeda , H. Tanaka , K. Tanaka , K. Tanaka , T. Tanaka , T. Tanaka , S. Tanioka , E. N. TapiaSan Martin , S. Telada , T. Tomaru , Y. Tomigami , T. Tomura , F. Travasso , L. Trozzo , T. Tsang , J-S. Tsao , K. Tsubono , S. Tsuchida , T. Tsutsui , T. Tsuzuki , D. Tuyenbayev , N. Uchikata , T. Uchiyama , A. Ueda , T. Uehara , K. Ueno , G. Ueshima , F. Uraguchi , T. Ushiba , M. H. P. M. van Putten , H. Vocca , J. Wang , T. Washimi , C. Wu , H. Wu , S. Wu , W-R. Xu , T. Yamada , K. Yamamoto , K. Yamamoto , T. Yamamoto , K. Yamashita , R. Yamazaki , Y. Yang , K. Yokogawa , J. Yokoyama , T. Yokozawa , T. Yoshioka , H. Yuzurihara , S. Zeidler , M. Zhan , H. Zhang , Y. Zhao , Z. -H. Zhu

Quantum locking using optical spring and homodyne detection has been devised to reduce quantum noise that limits the sensitivity of DECIGO, a space-based gravitational wave antenna in the frequency band around 0.1 Hz for detection of…