English

Gravitational waves from binary black hole mergers surrounded by scalar field clouds: Numerical simulations and observational implications

General Relativity and Quantum Cosmology 2021-02-19 v3

Abstract

We show how gravitational-wave observations of binary black hole (BBH) mergers can constrain the physical characteristics of a scalar field cloud parameterized by mass μ~\tilde{\mu} and strength ϕ0\phi_0 that may surround them. We numerically study the inspiraling equal-mass, non-spinning BBH systems dressed in such clouds, focusing especially on the gravitational-wave signals emitted by their merger-ringdown phase. These waveforms clearly reveal that larger values of μ~\tilde{\mu} or ϕ0\phi_0 cause bigger changes in the amplitude and frequency of the scalar-field-BBH ringdown signals. We show that the numerical waveforms of scalar-field-BBHs can be modelled as chirping sine-Gaussians, with matches in excess of 95%. This observation enables one to employ computationally expensive Bayesian studies for estimating the parameters of such binaries. Using our chirping sine-Gaussian signal model we establish that observations of BBH mergers at a distance of 450 Mpc will allow to distinguish BBHs without any scalar field from those with a field strength ϕ05.5×103\phi_0 \gtrsim 5.5\times 10^{-3}, at any fixed value of μ~[0.3,0.8]\tilde \mu \in [0.3,0.8], with 90% confidence or better, in single detectors with Advanced LIGO/Virgo type sensitivities. This provides hope for the possibility of determining or constraining the mass of ultra-light bosons with gravitational-wave observations of BBH mergers.

Keywords

Cite

@article{arxiv.2010.00935,
  title  = {Gravitational waves from binary black hole mergers surrounded by scalar field clouds: Numerical simulations and observational implications},
  author = {Sunil Choudhary and Nicolas Sanchis-Gual and Anshu Gupta and Juan Carlos Degollado and Sukanta Bose and José A. Font},
  journal= {arXiv preprint arXiv:2010.00935},
  year   = {2021}
}

Comments

13 pages, 11 figures, 2 captioned figures added(total 3 figures), Accepted for publication in Physical Review D. Includes a second appendix and a few additional references

R2 v1 2026-06-23T18:57:57.801Z