Article In: orcid

Higgs-induced gravitational waves: the interplay of non-minimal couplings, kination and top quark mass

Journal of High Energy Physics

Giorgio Laverda; Javier Rubio2025Springer Science and Business Media LLC

Key information

Authors:

Giorgio Laverda (Giorgio Laverda); Javier Rubio

Published in

25 de agosto de 2025

Abstract

<jats:title>A<jats:sc>bstract</jats:sc> </jats:title> <jats:p>We explore a minimal scenario where the sole Standard-Model Higgs is responsible for reheating the Universe after inflation, produces a significant background of gravitational waves and maintains the full classical stability of the electroweak vacuum. As the Higgs self-coupling runs toward negative values at high energy scales, a non-minimal interaction with curvature during a stiff background expansion era drives the Higgs fluctuations closer to the instability scale. This curvature-induced tachyonic instability leads to an intense production of Higgs particles, accompanied by a stochastic gravitational-wave background. The characteristic features of such signal can be directly correlated to the inflationary scale, the non-minimal coupling parameter and the top-quark Yukawa coupling. We distinguish between three possible scenarios: absolute stability with low top-quark masses, potential vacuum instability, and absolute stability with new physics above the instability scale. Our findings suggest that the detection of a peaked background of gravitational waves together with its inflationary tail has the potential to unveil the features of the Higgs effective potential at very high energy scales while providing a minimal explanation for the reheating phase and the emergence of the Standard-Model plasma in the early Universe. Unlike other studies in the literature, the generation of gravitational waves in our scenario does not depend on the quantum instability of the Standard Model vacuum.</jats:p>

Publication details

Authors in the community:

Publication version

VoR - Version of Record

Publisher

Springer Science and Business Media LLC

Title of the publication container

Journal of High Energy Physics

Volume

2025

Issue

8

ISSN

1029-8479

Fields of Science and Technology (FOS)

physical-sciences - Physical sciences

Publication language (ISO code)

eng - English

Rights type:

Only metadata available