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Non-equilibrium ionization in photoionized haloes: implications for shock stability and absorption-line signatures

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Abstract

We investigate the impact of non-equilibrium ionization (NEI) and the metagalactic radiation-field on the thermal evolution, virial shock stability, and absorption signatures of gas surrounding galaxies. Using 1D, spherically symmetric hydrodynamical simulations with an extended version of the hydra code, we follow dark-matter growth, gas dynamics, time-dependent ionization, and cooling in the presence of the UV background. We explicitly track all ions of H, He, C, N, O, Ne, Mg, Si, S, and Fe in haloes of mass (Formula presented) –(Formula presented) M(Formula presented) from (Formula presented) to (Formula presented). Without a UV background, NEI enhances post-shock cooling due to underionized gas, reducing pressure support and raising the minimum mass for stable shock formation. Including the UV background pre-ionizes the intergalactic medium (IGM), suppressing NEI, and restoring the collisional equilibrium threshold. We find that the IGM temperatures deviate from thermal equilibrium due to adiabatic expansion and collapse, while ionization remains close to equilibrium in the presence of a UV background, except in transient rapidly cooling regions where NEI occurs. We compute absorption columns of O vi, C iv, and H i, showing that, in our spherical models, the photoionized gas outside the shocked halo may produce substantial warm-ion columns extending beyond (Formula presented), including O vi column densities comparable to observed values. Our models indicate weak halo-mass dependence and extended distributions. We also find that (Formula presented) haloes can produce C iv ((Formula presented)  cm(Formula presented) ) and H i ((Formula presented)  cm(Formula presented) ) columns out to (Formula presented). Our results highlight the role of the UV background in regulating the thermal state and observable signatures of the gas surrounding galaxies. This emphasizes the importance of accounting for IGM contributions when interpreting circumgalactic absorption-line observations.

Original languageEnglish
Article numberstag1297
JournalMonthly Notices of the Royal Astronomical Society
Volume550
Issue number4
DOIs
StatePublished - Aug 2026

Bibliographical note

Publisher Copyright:
© The Author(s) 2026. Published by Oxford University Press on behalf of Royal Astronomical Society. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.

Keywords

  • galaxies: general
  • galaxies: haloes
  • intergalactic medium
  • ultraviolet: galaxies

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