VINTERGATAN IV: Cosmic phases of star formation in Milky Way-like galaxies
\'Alvaro Segovia Otero, Florent Renaud, Oscar Agertz

TL;DR
This study uses high-resolution cosmological simulations to explore how galaxy mergers and morphological changes influence star formation modes in Milky Way-like galaxies over cosmic time.
Contribution
It provides new insights into the impact of mergers and disc formation on star formation rates and gas depletion times in galaxy evolution.
Findings
Major mergers trigger starbursts with rapid gas depletion.
Disc formation leads to bursty star formation due to gas redistribution.
Post-merger galaxies show long, steady gas depletion times and secular evolution.
Abstract
The star formation history of a galaxy is modulated by a plethora of internal processes and environmental conditions. The details of how these evolve and couple together is not fully understood yet. In this work, we study the effects that galaxy mergers and morphological transformations have on setting different modes of star formation at galactic scales and across cosmic time. We monitor the global properties of VINTERGATAN, a 20 pc resolution cosmological zoom-in simulation of a Milky Way-type galaxy. Between redshifts 1 and 5, we find that major mergers trigger multiple starburst episodes, corresponding to a tenfold drop of the gas depletion time down to 100 Myr. Bursty star formation is enabled by the emergence of a galactic disc, when the rotational velocity of gas starts to dominate over its velocity dispersion. Coherent motions of gas then outweigh disordered ones, such that the…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Stellar, planetary, and galactic studies · Astrophysics and Star Formation Studies
