Detection of gas inflow during the onset of a starburst in a low-mass galaxy at z=2.45
Erin Coleman, Keerthi Vasan G.C., Yuguang Chen, Tucker Jones, Sunny, Rhoades, Richard Ellis, Dan Stark, Nicha Leethochawalit, Ryan Sanders, Kris, Mortensen, Karl Glazebrook, Glenn G. Kacprzak

TL;DR
This study reports the first spectroscopic evidence of gas inflow in a low-mass galaxy at high redshift, revealing early stages of starburst activity and providing insights into the baryon cycle during galaxy formation.
Contribution
It presents direct observational evidence of gas inflow at z=2.45, highlighting a phase of galaxy evolution characterized by inflow-dominated gas dynamics before outflows develop.
Findings
Detected redshifted absorption lines indicating inflow
Galaxy has low metallicity and a very young starburst
Inflow phase is short-lived and precedes strong outflows
Abstract
The baryon cycle is crucial for understanding galaxy formation, as gas inflows and outflows vary throughout a galaxy's lifetime and affect its star formation rate. Despite the necessity of accretion for galaxy growth at high redshifts, direct observations of inflowing gas have proven elusive especially at . We present spectroscopic analysis of a galaxy at redshift which exhibits signs of inflow in several ultraviolet interstellar absorption lines, with no clear outflow signatures. The absorption lines are redshifted by 250 km sec with respect to the systemic redshift, and C IV shows a prominent inverse P-Cygni profile. Simple stellar population models suggest that this galaxy has a low metallicity (5% solar), with a very young starburst of age 4 Myr dominating the ultraviolet luminosity. The gas inflow velocity and nebular velocity dispersion…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Galaxies: Formation, Evolution, Phenomena · Stellar, planetary, and galactic studies
