The star formation timescale of elliptical galaxies -- Fitting [Mg/Fe] and total metallicity simultaneously
Zhiqiang Yan (Bonn, Prague), Terea Jerabkova (Prague, Bonn, CALP),, Pavel Kroupa (Bonn, Prague)

TL;DR
This study refines galaxy star formation timescale estimates by simultaneously considering [Mg/Fe] and total metallicity, revealing a more severe downsizing relation and highlighting the potential role of a variable initial mass function.
Contribution
It introduces a method to incorporate both metallicity and [Mg/Fe] in SFT estimation, challenging previous models and suggesting a variable gwIMF as a solution.
Findings
Low-mass ellipticals have longer SFTs (>4 Gyr)
Massive ellipticals have shorter SFTs (~200 Myr)
Variable gwIMF could resolve formation timescale issues
Abstract
The alpha element to iron peak element ratio, for example [Mg/Fe], is a commonly applied indicator of the galaxy star formation timescale (SFT) since the two groups of elements are mainly produced by different types of supernovae that explode over different timescales. However, it is insufficient to consider only [Mg/Fe] when estimating the SFT. The [Mg/Fe] yield of a stellar population depends on its metallicity. Therefore, it is possible for galaxies with different SFTs and at the same time different total metallicity to have the same [Mg/Fe]. This effect has not been properly taken into consideration in previous studies. In this study, we assume the galaxy-wide stellar initial mass function (gwIMF) to be canonical and invariant. We demonstrate that our computation code reproduces the SFT estimations of previous studies where only the [Mg/Fe] observational constraint is applied. We…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Stellar, planetary, and galactic studies · Gamma-ray bursts and supernovae
