First measurement of the Mg II forest correlation function in the Epoch of Reionization
Suk Sien Tie, Joseph F. Hennawi, Feige Wang, Silvia Onorato, Jinyi, Yang, Eduardo Ba\~nados, Frederick B. Davies, Jose O\~norbe

TL;DR
This study presents the first measurement of the Mg II forest correlation function during the Epoch of Reionization, providing upper limits on magnesium abundance and demonstrating the potential of Mg II as a probe for cosmic reionization and metal enrichment.
Contribution
It introduces the first measurement of the Mg II forest correlation function at high redshift and compares it with models to constrain magnesium abundance during reionization.
Findings
Detected strong small-scale clustering in the Mg II forest
Set upper limits on [Mg/H] at z ~ 6.5-7.4
Found no significant correlation after masking strong absorbers
Abstract
In the process of producing the roughly three ionizing photons per atom required to reionize the IGM, the same massive stars explode and eject metals into their surroundings. While the overly sensitive Lya transition makes Gunn-Peterson absorption of background quasar light an ineffective probe of reionization at z > 6, strong low-ionization transitions like the MgII doublet will give rise to a detectable "metal-line forest", if metals pollute the neutral IGM. We measure the auto-correlation of the MgII forest transmission using a sample of ten ground based z >= 6.80 quasar spectra probing the redshift range 5.96 < z_MgII < 7.42 (z_MgII,median = 6.47). The correlation function exhibits strong small-scale clustering and a pronounced peak at the doublet velocity (768 km/s) arising from strong absorbers in the CGM of galaxies. After these strong absorbers are identified and masked the…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Stellar, planetary, and galactic studies
