Irreducible Graviton Floor from Reheating
Abstract
Inflaton decay inevitably emits gravitons through bremsstrahlung during reheating. We show that the soft part of this emission amplitude, fixed by Weinberg's soft-graviton theorem, becomes an irreducible stochastic gravitational-wave (GW) background after accounting for cosmological evolution. The theorem fixes the infrared branch of the spectrum, , independently of the microscopic operator responsible for inflaton decay, while the normalization is controlled by the hard inflaton decay rate and by a phase-space factor. We carry this out for inflaton -body decays, including the phase-space integrals, finding that the maximum of the spectrum scales as relative to the case. The signal can reach at frequencies above the GHz scale. This predicts a stochastic graviton floor from perturbative reheating: a larger signal would require either other processes beyond perturbative bremsstrahlung or inflationary scenarios beyond conventional single-field slow roll.
Keywords
Cite
@article{arxiv.2605.16201,
title = {Irreducible Graviton Floor from Reheating},
author = {James M. Cline and Yong Xu},
journal= {arXiv preprint arXiv:2605.16201},
year = {2026}
}
Comments
5 pages + 9 pages of Supplemental Material, 8 figures