Recombination Clumping Factor of Physically Defined Intergalactic Medium at the Epoch of Reionization

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Main Authors: Oku, Yuri, Cen, Renyue
Format: Preprint
Published: 2025
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author Oku, Yuri
Cen, Renyue
author_facet Oku, Yuri
Cen, Renyue
contents The recombination clumping factor, $C$, is a key parameter in modeling cosmic reionization, but its value is sensitive to the definition of the Intergalactic Medium (IGM). We investigate the clumping factor using the GAMER adaptive mesh refinement cosmological hydrodynamical simulation code. We introduce a new, physically-motivated definition of the IGM based on the effective transmission factor of ionizing photons. We perform large-scale, full-box simulations with varying intensities of the uniform ultraviolet background, and we find that our physically-defined clumping factor is significantly lower than the values derived from traditional overdensity thresholds. We also introduce an analytic model that distinguishes between the volume-weighted and mass-weighted averages of the neutral fraction, and we find the difference in reionization timing of $Δz \sim 2$ depending on the assumed clumping factor and the relation between the volume-weighted and mass-weighted neutral fractions. Our zoom-in simulations further show that, while SN feedback increases the clumping factor locally, the effect is limited to $\sim 100$ kpc scales and does not significantly alter the global clumping factor. The substantially lower clumping factor reduces the required ionizing photon budget, potentially alleviating tension for reionization scenarios driven by rare, bright sources like active galactic nuclei.
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id arxiv_https___arxiv_org_abs_2511_09364
institution arXiv
publishDate 2025
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spellingShingle Recombination Clumping Factor of Physically Defined Intergalactic Medium at the Epoch of Reionization
Oku, Yuri
Cen, Renyue
Cosmology and Nongalactic Astrophysics
The recombination clumping factor, $C$, is a key parameter in modeling cosmic reionization, but its value is sensitive to the definition of the Intergalactic Medium (IGM). We investigate the clumping factor using the GAMER adaptive mesh refinement cosmological hydrodynamical simulation code. We introduce a new, physically-motivated definition of the IGM based on the effective transmission factor of ionizing photons. We perform large-scale, full-box simulations with varying intensities of the uniform ultraviolet background, and we find that our physically-defined clumping factor is significantly lower than the values derived from traditional overdensity thresholds. We also introduce an analytic model that distinguishes between the volume-weighted and mass-weighted averages of the neutral fraction, and we find the difference in reionization timing of $Δz \sim 2$ depending on the assumed clumping factor and the relation between the volume-weighted and mass-weighted neutral fractions. Our zoom-in simulations further show that, while SN feedback increases the clumping factor locally, the effect is limited to $\sim 100$ kpc scales and does not significantly alter the global clumping factor. The substantially lower clumping factor reduces the required ionizing photon budget, potentially alleviating tension for reionization scenarios driven by rare, bright sources like active galactic nuclei.
title Recombination Clumping Factor of Physically Defined Intergalactic Medium at the Epoch of Reionization
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2511.09364