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author Aggarwal, Nancy
Aguiar, Odylio D.
Blas, Diego
Bauswein, Andreas
Cella, Giancarlo
Clesse, Sebastian
Cruise, Adrian Michael
Domcke, Valerie
Ellis, Sebastian
Figueroa, Daniel G.
Franciolini, Gabriele
Garcia-Cely, Camilo
Geraci, Andrew
Goryachev, Maxim
Grote, Hartmut
Hindmarsh, Mark
Ito, Asuka
Kopp, Joachim
Lee, Sung Mook
Martineau, Killian
McDonald, Jamie
Muia, Francesco
Mukund, Nikhil
Ottaway, David
Peloso, Marco
Peters, Krisztian
Quevedo, Fernando
Ricciardone, Angelo
Ringwald, Andreas
Steinlechner, Jessica
Steinlechner, Sebastian
Sun, Sichun
Tamarit, Carlos
Tobar, Michael E.
Torrenti, Francisco
Ünal, Caner
White, Graham
author_facet Aggarwal, Nancy
Aguiar, Odylio D.
Blas, Diego
Bauswein, Andreas
Cella, Giancarlo
Clesse, Sebastian
Cruise, Adrian Michael
Domcke, Valerie
Ellis, Sebastian
Figueroa, Daniel G.
Franciolini, Gabriele
Garcia-Cely, Camilo
Geraci, Andrew
Goryachev, Maxim
Grote, Hartmut
Hindmarsh, Mark
Ito, Asuka
Kopp, Joachim
Lee, Sung Mook
Martineau, Killian
McDonald, Jamie
Muia, Francesco
Mukund, Nikhil
Ottaway, David
Peloso, Marco
Peters, Krisztian
Quevedo, Fernando
Ricciardone, Angelo
Ringwald, Andreas
Steinlechner, Jessica
Steinlechner, Sebastian
Sun, Sichun
Tamarit, Carlos
Tobar, Michael E.
Torrenti, Francisco
Ünal, Caner
White, Graham
contents The first direct measurement of gravitational waves by the LIGO and Virgo collaborations has opened up new avenues to explore our Universe. This white paper outlines the challenges and gains expected in gravitational-wave searches at frequencies above the LIGO/Virgo band. The scarcity of possible astrophysical sources in most of this frequency range provides a unique opportunity to discover physics beyond the Standard Model operating both in the early and late Universe, and we highlight some of the most promising of these sources. We review several detector concepts that have been proposed to take up this challenge, and compare their expected sensitivity with the signal strength predicted in various models. This report is the summary of a series of workshops on the topic of high-frequency gravitational wave detection, held in 2019 (ICTP, Trieste, Italy), 2021 (online) and 2023 (CERN, Geneva, Switzerland).
format Preprint
id arxiv_https___arxiv_org_abs_2501_11723
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Challenges and Opportunities of Gravitational Wave Searches above 10 kHz
Aggarwal, Nancy
Aguiar, Odylio D.
Blas, Diego
Bauswein, Andreas
Cella, Giancarlo
Clesse, Sebastian
Cruise, Adrian Michael
Domcke, Valerie
Ellis, Sebastian
Figueroa, Daniel G.
Franciolini, Gabriele
Garcia-Cely, Camilo
Geraci, Andrew
Goryachev, Maxim
Grote, Hartmut
Hindmarsh, Mark
Ito, Asuka
Kopp, Joachim
Lee, Sung Mook
Martineau, Killian
McDonald, Jamie
Muia, Francesco
Mukund, Nikhil
Ottaway, David
Peloso, Marco
Peters, Krisztian
Quevedo, Fernando
Ricciardone, Angelo
Ringwald, Andreas
Steinlechner, Jessica
Steinlechner, Sebastian
Sun, Sichun
Tamarit, Carlos
Tobar, Michael E.
Torrenti, Francisco
Ünal, Caner
White, Graham
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
Instrumentation and Methods for Astrophysics
High Energy Physics - Experiment
High Energy Physics - Phenomenology
The first direct measurement of gravitational waves by the LIGO and Virgo collaborations has opened up new avenues to explore our Universe. This white paper outlines the challenges and gains expected in gravitational-wave searches at frequencies above the LIGO/Virgo band. The scarcity of possible astrophysical sources in most of this frequency range provides a unique opportunity to discover physics beyond the Standard Model operating both in the early and late Universe, and we highlight some of the most promising of these sources. We review several detector concepts that have been proposed to take up this challenge, and compare their expected sensitivity with the signal strength predicted in various models. This report is the summary of a series of workshops on the topic of high-frequency gravitational wave detection, held in 2019 (ICTP, Trieste, Italy), 2021 (online) and 2023 (CERN, Geneva, Switzerland).
title Challenges and Opportunities of Gravitational Wave Searches above 10 kHz
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
Instrumentation and Methods for Astrophysics
High Energy Physics - Experiment
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2501.11723