The age-chemical abundance structure of the Galactic disc II: $\alpha$-dichotomy and thick disc formation
Jianhui Lian, Daniel Thomas, Claudia Maraston, Timothy C. Beers,, Christian Moni Bidin, Jos\'e G. Fern\'andez-Trincado, D. A., Garc\'ia-Hern\'andez, Richard R. Lane, Ricardo R. Munoz, Christian Nitschelm,, Alexandre Roman-Lopes, Olga Zamora

TL;DR
This study models the inner Galactic disc's bimodal [Mg/Fe]-[Fe/H] distribution through two major starbursts, revealing their role in thick disc formation and chemical dichotomy.
Contribution
It introduces a multi-phase chemical evolution model with two starbursts that explains the observed alpha-chemical bimodality in the inner Galactic disc.
Findings
Bimodal [Mg/Fe]-[Fe/H] distribution explained by two starbursts.
First starburst forms high-alpha sequence; second forms low-alpha sequence.
Thick disc formation linked to these starburst events.
Abstract
We extend our previous work on the age-chemical abundance structure of the Galactic outer disc to the inner disc (4 < r < 8 kpc) based on the SDSS/APOGEE survey. Different from the outer disc, the inner disc stars exhibit a clear bimodal distribution in the [Mg/Fe]-[Fe/H] plane. While a number of scenarios have been proposed in the literature, it remains challenging to recover this bimodal distribution with theoretical models. To this end, we present a chemical evolution model embedding a complex multi-phase inner disc formation scenario that matches the observed bimodal [Mg/Fe]-[Fe/H] distribution. In this scenario, the formation of the inner disc is dominated by two main starburst episodes 6 Gyr apart with secular, low-level star formation activity in between. In our model, the first starburst occurs at early cosmic times (t~1 Gyr) and the second one 6 Gyr later at a cosmic time of…
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