Theory-agnostic searches for non-gravitational modes in black hole ringdown

Fuente: arXiv
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Autori principali: Crescimbeni, Francesco, Forteza, Xisco Jimenez, Bhagwat, Swetha, Westerweck, Julian, Pani, Paolo
Natura: Preprint
Pubblicazione: 2024
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author Crescimbeni, Francesco
Forteza, Xisco Jimenez
Bhagwat, Swetha
Westerweck, Julian
Pani, Paolo
author_facet Crescimbeni, Francesco
Forteza, Xisco Jimenez
Bhagwat, Swetha
Westerweck, Julian
Pani, Paolo
contents In any extension of General Relativity (GR), extra fundamental degrees of freedom couple to gravity. Besides deforming GR forecasts in a theory-dependent way, this coupling generically introduces extra modes in the gravitational-wave signal. We propose a novel theory-agnostic test of gravity to search for these nongravitational modes in black hole merger ringdown signals. To leading order in the GR deviations, their frequencies and damping times match those of a test scalar or vector field in a Kerr background, with only amplitudes and phases as free parameters. By applying this test to GW150914, GW190521, and GW200129, we find no strong evidence for an extra mode; however, its inclusion modifies the inferred distribution of the remnant spin. This test will be applicable for future detectors, which will achieve signal-to-noise ratios higher than 100 (and as high as 1000 for space-based detectors such as LISA). Such sensitivity will allow measurement of these modes with amplitude ratios as low as 0.02 for ground-based detectors (and as low as 0.003 for LISA), relative to the fundamental mode, enabling stringent agnostic constraints or detection of scalar/vector modes.
format Preprint
id arxiv_https___arxiv_org_abs_2408_08956
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Theory-agnostic searches for non-gravitational modes in black hole ringdown
Crescimbeni, Francesco
Forteza, Xisco Jimenez
Bhagwat, Swetha
Westerweck, Julian
Pani, Paolo
General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
In any extension of General Relativity (GR), extra fundamental degrees of freedom couple to gravity. Besides deforming GR forecasts in a theory-dependent way, this coupling generically introduces extra modes in the gravitational-wave signal. We propose a novel theory-agnostic test of gravity to search for these nongravitational modes in black hole merger ringdown signals. To leading order in the GR deviations, their frequencies and damping times match those of a test scalar or vector field in a Kerr background, with only amplitudes and phases as free parameters. By applying this test to GW150914, GW190521, and GW200129, we find no strong evidence for an extra mode; however, its inclusion modifies the inferred distribution of the remnant spin. This test will be applicable for future detectors, which will achieve signal-to-noise ratios higher than 100 (and as high as 1000 for space-based detectors such as LISA). Such sensitivity will allow measurement of these modes with amplitude ratios as low as 0.02 for ground-based detectors (and as low as 0.003 for LISA), relative to the fundamental mode, enabling stringent agnostic constraints or detection of scalar/vector modes.
title Theory-agnostic searches for non-gravitational modes in black hole ringdown
topic General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2408.08956