The Cosmic Evolution and Spatial Distribution of Multiphase Gas associated with QSOs

Fuente: arXiv
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Autori principali: Chen, Zeyu, Wang, Enci, Zou, Hu, Yu, Haoran, He, Zhicheng, Wang, Huiyuan, Gao, Yang, Lyu, Cheqiu, Jia, Cheng, Ma, Chengyu, Ding, Weiyu, Zhu, Runyu, Kong, Xu
Natura: Preprint
Pubblicazione: 2025
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author Chen, Zeyu
Wang, Enci
Zou, Hu
Yu, Haoran
He, Zhicheng
Wang, Huiyuan
Gao, Yang
Lyu, Cheqiu
Jia, Cheng
Ma, Chengyu
Ding, Weiyu
Zhu, Runyu
Kong, Xu
author_facet Chen, Zeyu
Wang, Enci
Zou, Hu
Yu, Haoran
He, Zhicheng
Wang, Huiyuan
Gao, Yang
Lyu, Cheqiu
Jia, Cheng
Ma, Chengyu
Ding, Weiyu
Zhu, Runyu
Kong, Xu
contents We investigate the multi-phase gas surrounding QSOs traced by 33 absorption lines (e.g., Ly$α$, C\,\textsc{iv}, Fe\,\textsc{ii}, Mg\,\textsc{ii}, etc.) in the stacked spectra of background sources, using the early data release from the Dark Energy Spectroscopic Instrument. Our analysis reveals that the equivalent width (\( W \)) of metal absorption lines decreases with increasing redshift, following an overall trend described by $W \propto (1+z)^{-4.0\pm 2.7}$. Different species that trace multi-phases of QSO-associated gas exhibit distinct evolutionary patterns. Additionally, the \( W \) of these absorption lines decreases with distance ($D$) from QSOs, which can be effectively characterized by a two-halo model. Compared to the projected two point correlation function of galaxies at similar redshifts, low-ionization ions exhibit similar clustering scales, while high-ionization ions show a significantly more extended spatial distribution. We also find that $W_{\text{FeII}}/W_{\text{MgII}}$ increases towards lower redshifts, which can be attributed to evolving star formation histories and/or changes in initial mass function for galaxies. By leveraging multiple absorption tracers, we conduct the first comprehensive investigation of diffuse, multiphase gas from the circumgalactic medium to cosmological scales, offering new insights into baryon cycles and the transport of metals throughout cosmic time.
format Preprint
id arxiv_https___arxiv_org_abs_2505_11919
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Cosmic Evolution and Spatial Distribution of Multiphase Gas associated with QSOs
Chen, Zeyu
Wang, Enci
Zou, Hu
Yu, Haoran
He, Zhicheng
Wang, Huiyuan
Gao, Yang
Lyu, Cheqiu
Jia, Cheng
Ma, Chengyu
Ding, Weiyu
Zhu, Runyu
Kong, Xu
Astrophysics of Galaxies
We investigate the multi-phase gas surrounding QSOs traced by 33 absorption lines (e.g., Ly$α$, C\,\textsc{iv}, Fe\,\textsc{ii}, Mg\,\textsc{ii}, etc.) in the stacked spectra of background sources, using the early data release from the Dark Energy Spectroscopic Instrument. Our analysis reveals that the equivalent width (\( W \)) of metal absorption lines decreases with increasing redshift, following an overall trend described by $W \propto (1+z)^{-4.0\pm 2.7}$. Different species that trace multi-phases of QSO-associated gas exhibit distinct evolutionary patterns. Additionally, the \( W \) of these absorption lines decreases with distance ($D$) from QSOs, which can be effectively characterized by a two-halo model. Compared to the projected two point correlation function of galaxies at similar redshifts, low-ionization ions exhibit similar clustering scales, while high-ionization ions show a significantly more extended spatial distribution. We also find that $W_{\text{FeII}}/W_{\text{MgII}}$ increases towards lower redshifts, which can be attributed to evolving star formation histories and/or changes in initial mass function for galaxies. By leveraging multiple absorption tracers, we conduct the first comprehensive investigation of diffuse, multiphase gas from the circumgalactic medium to cosmological scales, offering new insights into baryon cycles and the transport of metals throughout cosmic time.
title The Cosmic Evolution and Spatial Distribution of Multiphase Gas associated with QSOs
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2505.11919