Early metal-enriched baryon cycling before the midpoint of cosmic reionization

Fuente: arXiv
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Main Authors: Zhu, Yongda, Ji, Zhiyuan, Becker, George D., Ding, Jiani, Egami, Eiichi, Fan, Xiaohui, Jin, Xiangyu, Liu, Weizhe, Lyu, Jianwei, Ma, Zheng, Narisetty, Suprabhas, Rieke, George H., Wu, Yunjing, Yue, Minghao, Zhang, Junyu, Rieke, Marcia J.
Format: Preprint
Published: 2026
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author Zhu, Yongda
Ji, Zhiyuan
Becker, George D.
Ding, Jiani
Egami, Eiichi
Fan, Xiaohui
Jin, Xiangyu
Liu, Weizhe
Lyu, Jianwei
Ma, Zheng
Narisetty, Suprabhas
Rieke, George H.
Wu, Yunjing
Yue, Minghao
Zhang, Junyu
Rieke, Marcia J.
author_facet Zhu, Yongda
Ji, Zhiyuan
Becker, George D.
Ding, Jiani
Egami, Eiichi
Fan, Xiaohui
Jin, Xiangyu
Liu, Weizhe
Lyu, Jianwei
Ma, Zheng
Narisetty, Suprabhas
Rieke, George H.
Wu, Yunjing
Yue, Minghao
Zhang, Junyu
Rieke, Marcia J.
contents Models predict that chemical enrichment and gas redistribution should proceed rapidly once star formation begins, yet direct observational constraints at the earliest cosmic epochs have been scarce. Here we present evidence that metal-enriched gas in multiple ionic phases was already present around galaxies before the midpoint of cosmic reionization. Using JWST/NIRSpec rest-frame ultraviolet spectroscopy of three galaxies at redshifts $z=7.2-9.3$, we detect blueshifted metal absorption in all three systems; across the sample, the detected transitions span neutral, low-ionization, and high-ionization species, including O I, Si II, C II, Si IV, and C IV. These absorption features show velocity offsets of order $|Δv| \sim 50$--$250\,\mathrm{km\,s^{-1}}$, predominantly blueshifted relative to the systemic redshifts of the host galaxies derived from nebular emission lines. This ionic coexistence within a broadly shared velocity structure, together with the observed equivalent-width ratios, is consistent with outflowing or otherwise kinematically disturbed galaxy-associated gas, similar to that seen at lower redshift. The observations therefore indicate that metal-enriched gas associated with galaxies was already kinematically disturbed at very early times, requiring rapid metal production in the early generations of stars. These results show that key conditions for baryon cycling were established in at least a subset of luminous galaxies within the first several hundred million years of cosmic time, well before the completion of reionization.
format Preprint
id arxiv_https___arxiv_org_abs_2604_21218
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Early metal-enriched baryon cycling before the midpoint of cosmic reionization
Zhu, Yongda
Ji, Zhiyuan
Becker, George D.
Ding, Jiani
Egami, Eiichi
Fan, Xiaohui
Jin, Xiangyu
Liu, Weizhe
Lyu, Jianwei
Ma, Zheng
Narisetty, Suprabhas
Rieke, George H.
Wu, Yunjing
Yue, Minghao
Zhang, Junyu
Rieke, Marcia J.
Astrophysics of Galaxies
Models predict that chemical enrichment and gas redistribution should proceed rapidly once star formation begins, yet direct observational constraints at the earliest cosmic epochs have been scarce. Here we present evidence that metal-enriched gas in multiple ionic phases was already present around galaxies before the midpoint of cosmic reionization. Using JWST/NIRSpec rest-frame ultraviolet spectroscopy of three galaxies at redshifts $z=7.2-9.3$, we detect blueshifted metal absorption in all three systems; across the sample, the detected transitions span neutral, low-ionization, and high-ionization species, including O I, Si II, C II, Si IV, and C IV. These absorption features show velocity offsets of order $|Δv| \sim 50$--$250\,\mathrm{km\,s^{-1}}$, predominantly blueshifted relative to the systemic redshifts of the host galaxies derived from nebular emission lines. This ionic coexistence within a broadly shared velocity structure, together with the observed equivalent-width ratios, is consistent with outflowing or otherwise kinematically disturbed galaxy-associated gas, similar to that seen at lower redshift. The observations therefore indicate that metal-enriched gas associated with galaxies was already kinematically disturbed at very early times, requiring rapid metal production in the early generations of stars. These results show that key conditions for baryon cycling were established in at least a subset of luminous galaxies within the first several hundred million years of cosmic time, well before the completion of reionization.
title Early metal-enriched baryon cycling before the midpoint of cosmic reionization
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2604.21218