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Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes

Linear perturbations of spherically symmetric spacetimes in general relativity are described by radial wave equations, with potentials that depend on the spin of the perturbing field. In previous work [Phys. Rev. D 99, 104077 (2019)] we studied the quasinormal mode spectrum of spacetimes for which t...

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Autores principales: McManus, Ryan, Berti, Emanuele, Macedo, Caio F.B., Kimura, Masashi, Maselli, Andrea, Cardoso, Vitor
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.100.044061
http://cds.cern.ch/record/2689944
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author McManus, Ryan
Berti, Emanuele
Macedo, Caio F.B.
Kimura, Masashi
Maselli, Andrea
Cardoso, Vitor
author_facet McManus, Ryan
Berti, Emanuele
Macedo, Caio F.B.
Kimura, Masashi
Maselli, Andrea
Cardoso, Vitor
author_sort McManus, Ryan
collection CERN
description Linear perturbations of spherically symmetric spacetimes in general relativity are described by radial wave equations, with potentials that depend on the spin of the perturbing field. In previous work [Phys. Rev. D 99, 104077 (2019)] we studied the quasinormal mode spectrum of spacetimes for which the radial potentials are slightly modified from their general relativistic form, writing generic small modifications as a power-series expansion in the radial coordinate. We assumed that the perturbations in the quasinormal frequencies are linear in some perturbative parameter, and that there is no coupling between the perturbation equations. In general, matter fields and modifications to the gravitational field equations lead to coupled wave equations. Here we extend our previous analysis in two important ways: we study second-order corrections in the perturbative parameter, and we address the more complex (and realistic) case of coupled wave equations. We highlight the special nature of coupling-induced corrections when two of the wave equations have degenerate spectra, and we provide a ready-to-use recipe to compute quasinormal modes. We illustrate the power of our parametrization by applying it to various examples, including dynamical Chern-Simons gravity, Horndeski gravity and an effective field theory-inspired model.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26899442023-10-04T08:58:53Zdoi:10.1103/PhysRevD.100.044061http://cds.cern.ch/record/2689944engMcManus, RyanBerti, EmanueleMacedo, Caio F.B.Kimura, MasashiMaselli, AndreaCardoso, VitorParametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holesastro-ph.HEAstrophysics and Astronomygr-qcGeneral Relativity and CosmologyLinear perturbations of spherically symmetric spacetimes in general relativity are described by radial wave equations, with potentials that depend on the spin of the perturbing field. In previous work [Phys. Rev. D 99, 104077 (2019)] we studied the quasinormal mode spectrum of spacetimes for which the radial potentials are slightly modified from their general relativistic form, writing generic small modifications as a power-series expansion in the radial coordinate. We assumed that the perturbations in the quasinormal frequencies are linear in some perturbative parameter, and that there is no coupling between the perturbation equations. In general, matter fields and modifications to the gravitational field equations lead to coupled wave equations. Here we extend our previous analysis in two important ways: we study second-order corrections in the perturbative parameter, and we address the more complex (and realistic) case of coupled wave equations. We highlight the special nature of coupling-induced corrections when two of the wave equations have degenerate spectra, and we provide a ready-to-use recipe to compute quasinormal modes. We illustrate the power of our parametrization by applying it to various examples, including dynamical Chern-Simons gravity, Horndeski gravity and an effective field theory-inspired model.Linear perturbations of spherically symmetric spacetimes in general relativity are described by radial wave equations, with potentials that depend on the spin of the perturbing field. In previous work we studied the quasinormal mode spectrum of spacetimes for which the radial potentials are slightly modified from their general relativistic form, writing generic small modifications as a power-series expansion in the radial coordinate. We assumed that the perturbations in the quasinormal frequencies are linear in some perturbative parameter, and that there is no coupling between the perturbation equations. In general, matter fields and modifications to the gravitational field equations lead to coupled wave equations. Here we extend our previous analysis in two important ways: we study second-order corrections in the perturbative parameter, and we address the more complex (and realistic) case of coupled wave equations. We highlight the special nature of coupling-induced corrections when two of the wave equations have degenerate spectra, and we provide a ready-to-use recipe to compute quasinormal modes. We illustrate the power of our parametrization by applying it to various examples, including dynamical Chern-Simons gravity, Horndeski gravity and an effective field theory-inspired model.arXiv:1906.05155oai:cds.cern.ch:26899442019-06-12
spellingShingle astro-ph.HE
Astrophysics and Astronomy
gr-qc
General Relativity and Cosmology
McManus, Ryan
Berti, Emanuele
Macedo, Caio F.B.
Kimura, Masashi
Maselli, Andrea
Cardoso, Vitor
Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes
title Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes
title_full Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes
title_fullStr Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes
title_full_unstemmed Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes
title_short Parametrized black hole quasinormal ringdown. II. Coupled equations and quadratic corrections for nonrotating black holes
title_sort parametrized black hole quasinormal ringdown. ii. coupled equations and quadratic corrections for nonrotating black holes
topic astro-ph.HE
Astrophysics and Astronomy
gr-qc
General Relativity and Cosmology
url https://dx.doi.org/10.1103/PhysRevD.100.044061
http://cds.cern.ch/record/2689944
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