English

Tomographic constraints on the production rate of gravitational waves from astrophysical sources

Cosmology and Nongalactic Astrophysics 2024-07-01 v1 General Relativity and Quantum Cosmology

Abstract

Using an optimal quadratic estimator, we measure the large-scale cross-correlation between maps of the stochastic gravitational-wave intensity, constructed from the first three LIGO-Virgo observing runs, and a suite of tomographic samples of galaxies covering the redshift range z2z\lesssim 2. We do not detect any statistically significant cross-correlation, but the tomographic nature of the data allows us to place constraints on the (bias-weighted) production rate density of gravitational waves by astrophysical sources as a function of cosmic time. Our constraints range from bΩ˙GW<3.0×109Gyr1\langle b\dot{\Omega}_{\rm GW}\rangle<3.0\times10^{-9}\,{\rm Gyr}^{-1} at z0.06z\sim0.06 to bΩ˙GW<2.7×107Gyr1\langle b\dot{\Omega}_{\rm GW}\rangle<2.7\times10^{-7}\,{\rm Gyr}^{-1} at z1.5z\sim1.5 (95\% C.L.), assuming a frequency spectrum of the form f2/3f^{2/3} (corresponding to an astrophysical background of binary mergers), and a reference frequency fref=25Hzf_{\rm ref}=25\,{\rm Hz}. Although these constraints are 2\sim2 orders of magnitude higher than the expected signal, we show that a detection may be possible with future experiments.

Keywords

Cite

@article{arxiv.2406.19488,
  title  = {Tomographic constraints on the production rate of gravitational waves from astrophysical sources},
  author = {David Alonso and Mehraveh Nikjoo and Arianna I. Renzini and Emilio Bellini and Pedro G. Ferreira},
  journal= {arXiv preprint arXiv:2406.19488},
  year   = {2024}
}

Comments

14 pages, 11 figures