English

Vector induced Gravitational Waves sourced by Primordial Magnetic Fields

Cosmology and Nongalactic Astrophysics 2025-07-29 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology High Energy Physics - Theory

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 vector-induced gravitational waves\textit{vector-induced gravitational waves} (VIGWs). Notably, considering an inflation-inspired power-law type magnetic field power spectrum of the form PB(k)knBP_B(k)\propto k^{n_\mathrm{B}} (where nBn_{\rm B} is the magnetic spectral index), we show that the VIGW signal is enhanced for stiff post-inflationary EoS, with the maximum enhancement happening for w=1w=1. 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, krehk_\mathrm{reh}, with its present day peak amplitude scaling as ΩGW(kreh,η0)ΔNreh×(Hinf/MPl)8\Omega_{\rm GW}(k_{\rm reh},\eta_0)\propto \Delta N_{\rm reh}\times(H_{\rm inf}/M_{\rm Pl})^{8}, where HinfH_{\rm inf} is the Hubble parameter at the end of inflation and ΔNreh\Delta N_{\rm reh} the duration of the post-inflationary era in ee-folds. For w=1w=1 (kination) and nB>3/2n_{\rm B}>-3/2, one further obtains a nearly nBn_{\rm B}-independent frequency scaling of the GW spectrum of the form ΩGW(f,η0)(ffreh)2.8\Omega_{\rm GW}(f,\eta_0)\propto \left(\frac{f}{f_{\rm reh}}\right)^{-2.8} for f>frehkreh/(2π)f>f_\mathrm{reh}\equiv k_\mathrm{reh}/(2\pi). 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 HinfO(107)GeVH_{\rm inf} \sim O(10^{7})\:\mathrm{GeV} and O(1014)GeVO(10^{14})\:\mathrm{GeV}, and ΔNreh15\Delta N_{\rm reh} \sim 15 and 1010, 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

R2 v1 2026-06-28T22:58:02.064Z