A SPectroscopic survey of biased halos In the Reionization Era (ASPIRE): JWST Discovers an Overdensity around a Metal Absorption-selected Galaxy at $z\sim5.5$
Yunjing Wu, Feige Wang, Zheng Cai, Xiaohui Fan, Kristian Finlator,, Jinyi Yang, Joseph F. Hennawi, Fengwu Sun, Jaclyn B. Champagne, Xiaojing Lin,, Zihao Li, Zuyi Chen, Eduardo Ba\~nados, George D. Becker, Sarah E. I. Bosman,, Gstavo Bruzual, Stephane Charlot, Hsiao-Wen Chen

TL;DR
This study uses JWST spectroscopy to identify galaxies associated with metal absorption lines at z~5.5, revealing an overdensity of galaxies around a MgII absorber and providing insights into early universe metal enrichment.
Contribution
First JWST-based spectroscopic survey linking metal absorbers to galaxies at z>5, revealing galaxy overdensities and properties during the Epoch of Reionization.
Findings
Discovered a MgII-associated galaxy at z=5.428 with detailed properties.
Identified six additional [OIII] emitters within 300 pkpc at similar redshifts.
Observed galaxy properties consistent with theoretical expectations and simulations.
Abstract
The launch of opens a new window for studying the connection between metal-line absorbers and galaxies at the end of the Epoch of Reionization (EoR). Previous studies have detected absorber-galaxy pairs in limited quantities through ground-based observations. To enhance our understanding of the relationship between absorbers and their host galaxies at , we utilized the NIRCam Wide Field Slitless Spectroscopy (WFSS) to search for absorber-associated galaxies by detecting their rest-frame optical emission lines (e.g., [OIII] + H). We report the discovery of a MgII-associated galaxy at using data from the ASPIRE program. The MgII absorber is detected on the spectrum of quasar J0305--3150 with a rest-frame equivalent width of 0.74. The associated galaxy has an [OIII] luminosity of with an impact…
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