Population III star formation in an X-ray background: IV. On-the-fly calculation of radiation backgrounds and their impact on the intergalactic medium

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ID: 316548
2026
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Abstract
Abstract In this paper, part of a series on the effects of X-ray sources in promoting Population III (Pop III) star formation, we investigate the ionisation and heating of the intergalactic medium (IGM) and the consequent enhancement of molecular hydrogen (H2) and Pop III formation using cosmological zoom-in simulations. We adopt a X-ray feedback model in which X-rays originate solely from Pop III supernovae, and compute the global X-ray and Lyman-Werner (LW) radiation backgrounds on-the-fly during the simulation of a mean-density region of the Universe. This approach self-consistently captures the feedback loop between Pop III stars and the radiation backgrounds they produce. Pop III supernovae generate a weak X-ray background (JX, 21 ~ 10−5) and a moderate LW background (JLW, 21 ~ 10−1); the latter intensifies below z ≈ 12 (JLW, 21 ~ 101–102) with the onset of Pop II star formation. Applying these backgrounds to regions of varying mean density produces a net positive X-ray feedback that increases the Pop III number density, with stronger enhancement in underdense regions. The positive feedback is more pronounced when the X-ray background is computed on-the-fly rather than by post-processing, demonstrating the importance of the feedback loop. The X-ray background also raises the Thomson scattering optical depth at high redshift, while the total optical depth remains consistent with Planck 2018 constraints. Because our model includes only Pop III supernovae as X-ray sources, stronger X-ray feedback is expected when additional sources are included, as will be explored in future work.
Reference Key
openalex_W7164040540 Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Jongwon Park, Massimo Ricotti
Journal monthly notices of the royal astronomical society
Year 2026
DOI
10.1093/mnras/stag1080
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Keywords Keywords not found

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