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The upcoming Laser Interferometer Space Antenna (LISA) will detect a large gravitational-wave foreground of Galactic white dwarf binaries. These sources are exceptional for their probable detection at electromagnetic wavelengths, some long…

After first reviewing the gravitational wave (GW) spectral classification. we discuss the sensitivities of GW detection in space aimed at low frequency band (100 nHz-100 mHz) and middle frequency band (100 mHz-10 Hz). The science goals are…

General Relativity and Quantum Cosmology · Physics 2018-01-24 Wei-Tou Ni

Fermi LAT observations of gamma-ray pulsars can be used to build a pulsar timing array (PTA) experiment to search for gravitational wave (GW) signals at nanohertz frequencies. At those frequencies, the dominant signal is expected to be a…

Data quality assessment plays an essential role in the quest to detect gravitational wave signals in data from the LIGO and Virgo interferometric gravitational wave detectors. Interferometer data contains a high rate of noise transients…

General Relativity and Quantum Cosmology · Physics 2019-08-15 Jessica McIver

A new detection method for gravitational waves (GWs) with ultra-low frequencies ($f_{\rm GW} \lesssim 10^{-10}~{\rm Hz}$), which is much lower than the range of pulsar timing arrays (PTAs), was proposed in Yonemaru et al. (2016). This…

High Energy Astrophysical Phenomena · Physics 2019-05-29 Shinnosuke Hisano , Naoyuki Yonemaru , Hiroki Kumamoto , Keitaro Takahashi

Recent core-collapse supernova (CCSN) simulations have predicted several distinct features in gravitational-wave (GW) spectrograms, including a ramp-up signature due to the g-mode oscillation of the proto-neutron star (PNS) and an excess in…

High Energy Astrophysical Phenomena · Physics 2018-11-14 Hajime Kawahara , Takami Kuroda , Tomoya Takiwaki , Kazuhiro Hayama , Kei Kotake

Small, highly absorbing points are randomly present on the surfaces of the main interferometer optics in Advanced LIGO. The resulting nano-meter scale thermo-elastic deformations and substrate lenses from these micron-scale absorbers…

Instrumentation and Detectors · Physics 2021-05-12 Aidan F. Brooks , Gabriele Vajente , Hiro Yamamoto , Rich Abbott , Carl Adams , Rana X. Adhikari , Alena Ananyeva , Stephen Appert , Koji Arai , Joseph S. Areeda , Yasmeen Asali , Stuart M. Aston , Corey Austin , Anne M. Baer , Matthew Ball , Stefan W. Ballmer , Sharan Banagiri , David Barker , Lisa Barsotti , Jeffrey Bartlett , Beverly K. Berger , Joseph Betzwieser , Dripta Bhattacharjee , Garilynn Billingsley , Sebastien Biscans , Carl D. Blair , Ryan M. Blair , Nina Bode , Phillip Booker , Rolf Bork , Alyssa Bramley , Daniel D. Brown , Aaron Buikema , Craig Cahillane , Kipp C. Cannon , Huy Tuong Cao , Xu Chen , Alexei A. Ciobanu , Filiberto Clara , Camilla Compton , Sam J. Cooper , Kenneth R. Corley , Stefan T. Countryman , Pep B. Covas , Dennis C. Coyne , Laurence E. Datrier , Derek Davis , Chiara D. Difronzo , Katherine L. Dooley , Jenne C. Driggers , Peter Dupej , Sheila E. Dwyer , Anamaria Effler , Todd Etzel , Matthew Evans , Tom M. Evans , Jon Feicht , Alvaro Fernandez-Galiana , Peter Fritschel , Valery V. Frolov , Paul Fulda , Michael Fyffe , Joe A. Giaime , Dwayne D. Giardina , Patrick Godwin , Evan Goetz , Slawomir Gras , Corey Gray , Rachel Gray , Anna C. Green , Anchal Gupta , Eric K. Gustafson , Dick Gustafson , Evan Hall , Jonathan Hanks , Joe Hanson , Terra Hardwick , Raine K. Hasskew , Matthew C. Heintze , Adrian F. Helmling-Cornell , Nathan A. Holland , Jeff D. Jones , Shivaraj Kandhasamy , Sudarshan Karki , Marie Kasprzack , Keita Kawabe , Nutsinee Kijbunchoo , Peter J. King , Jeffrey S. Kissel , Rahul Kumar , Michael Landry , Benjamin B. Lane , Brian Lantz , Michael Laxen , Yannick K. Lecoeuche , Jessica Leviton , Liu Jian , Marc Lormand , Andrew P. Lundgren , Ronaldas Macas , Myron Macinnis , Duncan M. Macleod , Georgia L. Mansell , Szabolcs Marka , Zsuzsanna Marka , Denis V. Martynov , Ken Mason , Thomas J. Massinger , Fabrice Matichard , Nergis Mavalvala , Richard McCarthy , David E. McClelland , Scott McCormick , Lee McCuller , Jessica McIver , Terry McRae , Gregory Mendell , Kara Merfeld , Edmond L. Merilh , Fabian Meylahn , Timesh Mistry , Richard Mittleman , Gerardo Moreno , Conor M. Mow-Lowry , Simone Mozzon , Adam Mullavey , Timothy J. Nelson , Philippe Nguyen , Laura K. Nuttall , Jason Oberling , Richard J. Oram , Charles Osthelder , David J. Ottaway , Harry Overmier , Jordan R. Palamos , William Parker , Ethan Payne , Arnaud Pele , Reilly Penhorwood , Carlos J. Perez , Marc Pirello , Hugh Radkins , Karla E. Ramirez , Jonathan W. Richardson , Keith Riles , Norna A. Robertson , Jameson G. Rollins , Chandra L. Romel , Janeen H. Romie , Michael P. Ross , Kyle Ryan , Travis Sadecki , Eduardo J. Sanchez , Luis E. Sanchez , Saravanan R. Tiruppatturrajamanikkam , Richard L. Savage , Dean Schaetzl , Roman Schnabel , Robert M. Schofield , Eyal Schwartz , Danny Sellers , Thomas Shaffer , Daniel Sigg , Bram J. Slagmolen , Joshua R. Smith , Siddharth Soni , Borja Sorazu , Andrew P. Spencer , Ken A. Strain , Ling Sun , Marek J. Szczepanczyk , Michael Thomas , Patrick Thomas , Keith A. Thorne , Karl Toland , Calum I. Torrie , Gary Traylor , Maggie Tse , Alexander L. Urban , Guillermo Valdes , Daniel C. Vander-Hyde , Peter J. Veitch , Krishna Venkateswara , Gautam Venugopalan , Aaron D. Viets , Thomas Vo , Cheryl Vorvick , Madeline Wade , Robert L. Ward , Jim Warner , Betsy Weaver , Rainer Weiss , Chris Whittle , Benno Willke , Christopher C. Wipf , Liting Xiao , Hang Yu , Haocun Yu , Liyuan Zhang , Michael E. Zucker , John Zweizig

Reducing noises and enhancing signal-to-noise ratios (SNRs) have become critical for designing third-generation gravitational-wave (GW) detectors with a GW strain of less than $10^{-23}$/$\rm \sqrt{Hz}$. In this paper, we propose a…

General Relativity and Quantum Cosmology · Physics 2023-08-01 Jing-Hui Huang , Fei-Fan He , Xue-Ying Duan , Guang-Jun Wang , Xiang-Yun Hu

Interferometric gravitational wave detectors are dynamic instruments. Changing gravitational-wave strains influence the trajectories of null geodesics and therefore modify the interferometric response. These effects will be important when…

General Relativity and Quantum Cosmology · Physics 2017-10-11 Reed Essick , Salvatore Vitale , Matthew Evans

Space-based gravitational wave detectors cannot keep rigid structures and precise arm length equality, so the precise equality of detector arms which is required in a ground-based interferometer to cancel the overwhelming laser noise is…

General Relativity and Quantum Cosmology · Physics 2019-09-25 Chunyu Zhang , Qing Gao , Yungui Gong , Dicong Liang , Alan J. Weinstein , Chao Zhang

Gravitational wave (GW) astronomy offers the potential to probe the wave-optics regime of gravitational lensing. Wave optics (WO) effects are relevant at low frequencies, when the wavelength is comparable to the characteristic lensing time…

General Relativity and Quantum Cosmology · Physics 2023-09-06 Giovanni Tambalo , Miguel Zumalacárregui , Liang Dai , Mark Ho-Yeuk Cheung

Assessing the probability that two or more gravitational waves (GWs) are lensed images of the same source requires an understanding of the image properties, including their relative phase shifts in strong lensing (SL). For non-precessing,…

General Relativity and Quantum Cosmology · Physics 2021-03-31 Jose María Ezquiaga , Daniel E. Holz , Wayne Hu , Macarena Lagos , Robert M. Wald

We report an upper bound on the strain amplitude of gravitational wave bursts in a waveband from around 800Hz to 1.25kHz. In an effective coincident observing period of 62 hours, the prototype laser interferometric gravitational wave…

General Relativity and Quantum Cosmology · Physics 2008-11-26 D. Nicholson

This article reviews current efforts and plans for gravitational-wave detection, the gravitational-wave sources that might be detected, and the information that the detectors might extract from the observed waves. Special attention is paid…

General Relativity and Quantum Cosmology · Physics 2007-05-23 Kip S. Thorne

We study the possibility of using matter wave interferometry techniques to build a gravitational wave detector. We derive the response function and find that it contains a term proportional to the derivative of the gravitational wave, a…

General Relativity and Quantum Cosmology · Physics 2008-11-26 Stefano Foffa , Alice Gasparini , Michele Papucci , Riccardo Sturani

In this paper, we analyze parity-violating effects in the propagation of gravitational waves (GWs). For this purpose, we adopt a newly proposed parametrized post-Einstenian (PPE) formalism, which encodes modified gravity corrections to the…

General Relativity and Quantum Cosmology · Physics 2024-06-05 Matteo Califano , Rocco D'Agostino , Daniele Vernieri

Recently, observational searches for gravitational wave background (GWB) have developed and given direct and indirect constraints on the energy density of GWB in a broad range of frequencies. These constraints have already rejected some…

Apart from omnidirectional, a solid elastic sphere is a natural multimode and multifrequency device for the detection of Gravitational Waves (GW). Motion sensing in a spherical GW detector thus requires a multiple set of transducers…

Astrophysics · Physics 2007-05-23 J. Alberto Lobo , M. Angeles Serrano

Advanced LIGO and Advanced Virgo could observe the first lensed gravitational waves in the coming years, while the future Einstein Telescope could observe hundreds of lensed events. Ground-based gravitational-wave detectors can resolve…

Cosmology and Nongalactic Astrophysics · Physics 2020-11-25 Giulia Pagano , Otto A. Hannuksela , Tjonnie G. F. Li

Gravitational-wave data analysis relies on accurate and efficient methods to extract physical information from noisy detector signals, yet the increasing rate and complexity of observations represent a growing challenge. Deep learning…

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