Vector induced Gravitational Waves sourced by Primordial Magnetic Fields
Abstract
In this work, we develop a generic formalism for the study of tensor perturbations induced at second order by first-order vector metric perturbations, dubbing these induced tensor modes (VIGWs). Notably, considering an inflation-inspired power-law type magnetic field power spectrum of the form (where is the magnetic spectral index), we show that the VIGW signal is enhanced for stiff post-inflationary EoS, with the maximum enhancement happening for . We explicitly demonstrate this contribution is dominant over the first-order magnetically-sourced GWs. The VIGW spectrum exhibits a maximum at around the scale crossing the cosmological horizon at the end of reheating, , with its present day peak amplitude scaling as , where is the Hubble parameter at the end of inflation and the duration of the post-inflationary era in -folds. For (kination) and , one further obtains a nearly -independent frequency scaling of the GW spectrum of the form for . Finally, we highlight that the VIGW signal can be well within the detection bands of several next-generation interferometric GW missions at small scales. Indicatively, for and , and and , the VIGW signal is expected to be detectable by LISA and ET respectively.
Keywords
Cite
@article{arxiv.2504.10477,
title = {Vector induced Gravitational Waves sourced by Primordial Magnetic Fields},
author = {Arko Bhaumik and Theodoros Papanikolaou and Anish Ghoshal},
journal= {arXiv preprint arXiv:2504.10477},
year = {2025}
}
Comments
20 pages plus appendices (26 pages in total), 8 figures, version accepted in JCAP with minor text revision