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相关论文: Gravitational-Wave Lunar Observatory for Cosmology

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Gravitational wave (GW) detection in space is aimed at low frequency band (100 nHz - 100 mHz) and middle frequency band (100 mHz - 10 Hz). The science goals are the detection of GWs from (i) Supermassive Black Holes; (ii) Extreme-Mass-Ratio…

天体物理仪器与方法 · 物理学 2016-12-06 Wei-Tou Ni

New concepts were recently proposed for gravitational-wave (GW) detectors on the Moon. These include laser-interferometric detectors, proposed as free-range or optical-fiber interferometers, and inertial acceleration sensors. Some of them…

广义相对论与量子宇宙学 · 物理学 2022-08-29 Jan Harms

A new era of lunar exploration has begun with participation of all major space agencies. This activity brings opportunities for revolutionary science experiments and observatories on the Moon. The idea of a lunar gravitational-wave detector…

天体物理仪器与方法 · 物理学 2024-09-26 Andrea Cozzumbo , Benedetta Mestichelli , Marco Mirabile , Lavinia Paiella , Jacopo Tissino , Jan Harms

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…

广义相对论与量子宇宙学 · 物理学 2018-01-24 Wei-Tou Ni

The recent success of gravitational-wave (GW) astronomy together with renewed plans for lunar geophysical instrumentation has revived interest in using the Moon as a resonant detector for mid-frequency (mHz-Hz) GWs. In realistic…

地球与行星天体物理 · 物理学 2026-05-19 Han Yan , Jan Harms

The Lunar Gravitational-wave Antenna (LGWA) is a proposed array of next-generation inertial sensors to monitor the response of the Moon to gravitational waves (GWs). Given the size of the Moon and the expected noise produced by the lunar…

广义相对论与量子宇宙学 · 物理学 2025-10-07 Parameswaran Ajith , Pau Amaro Seoane , Manuel Arca Sedda , Riccardo Arcodia , Francesca Badaracco , Biswajit Banerjee , Enis Belgacem , Giovanni Benetti , Stefano Benetti , Alexey Bobrick , Alessandro Bonforte , Elisa Bortolas , Valentina Braito , Marica Branchesi , Adam Burrows , Enrico Cappellaro , Roberto Della Ceca , Chandrachur Chakraborty , Shreevathsa Chalathadka Subrahmanya , Michael W. Coughlin , Stefano Covino , Andrea Derdzinski , Aayushi Doshi , Maurizio Falanga , Stefano Foffa , Alessia Franchini , Alessandro Frigeri , Yoshifumi Futaana , Oliver Gerberding , Kiranjyot Gill , Matteo Di Giovanni , Ines Francesca Giudice , Margherita Giustini , Philipp Gläser , Jan Harms , Joris van Heijningen , Francesco Iacovelli , Bradley J. Kavanagh , Taichi Kawamura , Arun Kenath , Elisabeth-Adelheid Keppler , Chiaki Kobayashi , Goro Komatsu , Valeriya Korol , N. V. Krishnendu , Prayush Kumar , Francesco Longo , Michele Maggiore , Michele Mancarella , Andrea Maselli , Alessandra Mastrobuono-Battisti , Francesco Mazzarini , Andrea Melandri , Daniele Melini , Sabrina Menina , Giovanni Miniutti , Deeshani Mitra , Javier Morán-Fraile , Suvodip Mukherjee , Niccolò Muttoni , Marco Olivieri , Francesca Onori , Maria Alessandra Papa , Ferdinando Patat , Andrea Perali , Tsvi Piran , Silvia Piranomonte , Alberto Roper Pol , Masroor C. Pookkillath , R. Prasad , Vaishak Prasad , Alessandra De Rosa , Sourav Roy Chowdhury , Roberto Serafinelli , Alberto Sesana , Paola Severgnini , Angela Stallone , Jacopo Tissino , Hrvoje Tkalčić , Lina Tomasella , Martina Toscani , David Vartanyan , Cristian Vignali , Lucia Zaccarelli , Morgane Zeoli , Luciano Zuccarello

A recent proposal describes space based gravitational wave (GW) detection with optical lattice atomic clocks [Kolkowitz et. al., Phys. Rev. D 94, 124043 (2016)] [1]. Based on their setup, we propose a new measurement method for…

广义相对论与量子宇宙学 · 物理学 2020-05-15 Feifan He , Baocheng Zhang

We propose a space-based interferometer surveying the gravitational wave (GW) sky in the milli-Hz to $\mu$-Hz frequency range. By the 2040s', the $\mu$-Hz frequency band, bracketed in between the Laser Interferometer Space Antenna (LISA)…

The low-frequency sky below $\sim$15 MHz (20 m) is obscured by the Earth's ionosphere, the layer of charged particles above the neutral atmosphere. Single spacecraft have made measurements in this band, but cannot achieve high or even…

天体物理仪器与方法 · 物理学 2024-04-15 Mary Knapp , Lenny Paritsky , Ekaterina Kononov , Melodie M. Kao

The Earth's Moon presents a uniquely advantageous environment for detecting astrophysical gravitational waves (GWs) in the frequency range of millihertz to decihertz. Unlike Terrestrial GW detectors, the quiet seismic environment of the…

广义相对论与量子宇宙学 · 物理学 2025-08-27 Teviet Creighton , Philippe Lognonné , Mark P. Panning , James Trippe , Volker Quetschke , Karan Jani

The toolbox to study the Universe grew on 14 September 2015 when the LIGO-Virgo collaboration heard a signal from two colliding black holes between 30-250 Hz. Since then, many more gravitational waves have been detected as detectors…

The response of the Moon to gravitational waves (GWs) is used by some of the proposed lunar GW detectors like the Lunar Gravitational-wave Antenna (LGWA) to turn the Moon into an antenna for GWs. The deep connection between the lunar…

广义相对论与量子宇宙学 · 物理学 2024-03-11 Xiaoming Bi , Jan Harms

Gravitational waves (GWs) are a new avenue of observing our Universe. So far, we have seen them in the ~10-100 Hz range, and there are hints that we might soon detect them in the nanohertz regime. Multiple efforts are underway to access GWs…

星系天体物理 · 物理学 2023-06-28 Kris Pardo , Tzu-Ching Chang , Olivier Doré , Yijun Wang

Gravitational-wave (GW) astronomy is transforming our understanding of the Universe by probing phenomena invisible to electromagnetic observatories. A comprehensive exploration of the GW frequency spectrum is essential to fully harness this…

宇宙学与河外天体物理 · 物理学 2022-03-14 Diego Blas , Alexander C. Jenkins

We review the tests of general relativity that will become possible with space-based gravitational-wave detectors operating in the ~0.01mHz - 1Hz low-frequency band. The fundamental aspects of gravitation that can be tested include the…

广义相对论与量子宇宙学 · 物理学 2015-06-12 Jonathan R. Gair , Michele Vallisneri , Shane L. Larson , John G. Baker

The goal of the Laser Interferometric Gravitational-Wave Observatory (LIGO) is to detect and study gravitational waves of astrophysical origin. Direct detection of gravitational waves holds the promise of testing general relativity in the…

广义相对论与量子宇宙学 · 物理学 2009-09-29 The LIGO Scientific Collaboration , B. Abbott

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 detection of gravitational waves opened up a new window to look into the Universe by probing phenomena invisible through electromagnetic observations. As gravitational waves interact very weakly with matter, their detection is…

广义相对论与量子宇宙学 · 物理学 2025-05-29 Soumen Roy , Bruno Bertrand , Justin Janquart

Twenty years ago, construction began on the Laser Interferometer Gravitational-wave Observatory (LIGO). Advanced LIGO, with a factor of ten better design sensitivity than Initial LIGO, will begin taking data this year, and should soon make…

天体物理仪器与方法 · 物理学 2015-05-15 Sheila E. Dwyer , Daniel Sigg , Stefan Ballmer , Lisa Barsotti , Nergis Mavalvala , Matthew Evans
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