The heating rate of the Intergalactic Medium by Lyman- alpha photon scattering

arXiv:2607.03400 · astro-ph.CO · Submitted 2026-07-03 · Read on arXiv

Avery Meiksin

Institute for Astronomy, University of Edinburgh

astro-ph.CO

Submitted: 2026-07-03

Comments: 3 pages, 1 figure. Accepted to Research Notes of the American Astronomical Society

Journal ref: 2026 Res. Notes AAS 10:181

DOI: 10.3847/2515-5172/ae84cb

License: http://creativecommons.org/licenses/by/4.0/

The gist: The strength of the 21-cm Cosmic Dawn radio absorption signature against the Cosmic Microwave Background or against a bright background radio source depends on the temperature of the neutral hydrogen

Terminology

Abstract

The strength of the 21-cm Cosmic Dawn radio absorption signature against the Cosmic Microwave Background or against a bright background radio source depends on the temperature of the neutral hydrogen in the intergalactic medium. While x-rays from forming galaxies will likely dominate the heating rate, recent models suggest scenarios in which heating by the scattering of Lyman- alpha photons sourced by the galaxies contributes non-negligibly as well, and may even dominate. The efficiency of Lyman- alpha photon heating for a point source at high redshift using a numerical solution to the exact radiative transfer equation is provided here. It is found to be a factor of several smaller than the rate computed in the commonly used diffusion approximation to the radiative transfer equation.

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