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Gravitational Waves from Reheating beyond Instantaneous Thermalization

Published 1 Sep 2026 in hep-ph, astro-ph.CO, and hep-th | (2609.01480v1)

Abstract: We study gravitational-wave production during perturbative reheating without assuming instantaneous thermalization of the inflaton decay products. The injected energetic particles thermalize through an in-medium cascade of nearly collinear splittings subject to the Landau-Pomeranchuk-Migdal effect and are ultimately isotropized by elastic scatterings near the thermal scale. The non-thermal hard population present before complete thermalization produces an additional gravitational-wave component through hard-soft scatterings, with Ω<em>GWf<sup>1/2Ω<em>{\mathrm{GW}}\propto f<sup>{1/2} below the injection-scale turnover. The same isotropization erases the directional information underlying the vacuum $1/k$ bremsstrahlung soft pole, changing the deep-infrared spectrum from Ω</em>GWfΩ</em>{\mathrm{GW}}\propto f to ΩGWf<sup>3Ω_{\mathrm{GW}}\propto f<sup>3.

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