On the baryon budget in the X-ray-emitting circumgalactic medium of Milky Way-mass galaxies

Fuente: arXiv
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Main Authors: Zhang, Yi, Shreeram, Soumya, Ponti, Gabriele, Comparat, Johan, Merloni, Andrea, Qu, Zhijie, Li, Jiangtao, Bregman, N. Joel, Fang, Taotao
Format: Preprint
Published: 2025
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author Zhang, Yi
Shreeram, Soumya
Ponti, Gabriele
Comparat, Johan
Merloni, Andrea
Qu, Zhijie
Li, Jiangtao
Bregman, N. Joel
Fang, Taotao
author_facet Zhang, Yi
Shreeram, Soumya
Ponti, Gabriele
Comparat, Johan
Merloni, Andrea
Qu, Zhijie
Li, Jiangtao
Bregman, N. Joel
Fang, Taotao
contents Recent observations with SRG/eROSITA have revealed the average X-ray surface brightness profile of the X-ray-emitting circumgalactic medium (CGM) around Milky Way (MW)-mass galaxies, offering valuable insights into the baryon mass in these systems. However, the estimation of the baryon mass depends critically on several assumptions regarding the gas density profile, temperature, metallicity, and the underlying halo mass distribution. Here, we assess how these assumptions affect the inferred baryon mass of the X-ray-emitting CGM in MW-mass galaxies, based on the stacked eROSITA signal. We find that variations in temperature profiles and uncertainties in the halo mass introduce the dominant sources of uncertainty, resulting in X-ray-emitting baryon mass estimates that vary by nearly a factor of four ($0.8-3.5\times10^{11} M_\odot$). Assumptions about metallicity contribute an additional uncertainty of approximately $50\%$. We emphasize that accurate X-ray spectral constraints on gas temperature and metallicity, along with careful modeling of halo mass uncertainty, are essential for accurately estimating the baryon mass for MW-mass galaxies. Future X-ray microcalorimeter missions will be crucial for determining the hot CGM properties and closing the baryon census at the MW-mass scale.
format Preprint
id arxiv_https___arxiv_org_abs_2511_17313
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle On the baryon budget in the X-ray-emitting circumgalactic medium of Milky Way-mass galaxies
Zhang, Yi
Shreeram, Soumya
Ponti, Gabriele
Comparat, Johan
Merloni, Andrea
Qu, Zhijie
Li, Jiangtao
Bregman, N. Joel
Fang, Taotao
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
Recent observations with SRG/eROSITA have revealed the average X-ray surface brightness profile of the X-ray-emitting circumgalactic medium (CGM) around Milky Way (MW)-mass galaxies, offering valuable insights into the baryon mass in these systems. However, the estimation of the baryon mass depends critically on several assumptions regarding the gas density profile, temperature, metallicity, and the underlying halo mass distribution. Here, we assess how these assumptions affect the inferred baryon mass of the X-ray-emitting CGM in MW-mass galaxies, based on the stacked eROSITA signal. We find that variations in temperature profiles and uncertainties in the halo mass introduce the dominant sources of uncertainty, resulting in X-ray-emitting baryon mass estimates that vary by nearly a factor of four ($0.8-3.5\times10^{11} M_\odot$). Assumptions about metallicity contribute an additional uncertainty of approximately $50\%$. We emphasize that accurate X-ray spectral constraints on gas temperature and metallicity, along with careful modeling of halo mass uncertainty, are essential for accurately estimating the baryon mass for MW-mass galaxies. Future X-ray microcalorimeter missions will be crucial for determining the hot CGM properties and closing the baryon census at the MW-mass scale.
title On the baryon budget in the X-ray-emitting circumgalactic medium of Milky Way-mass galaxies
topic Astrophysics of Galaxies
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2511.17313