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    <rdf:Description rdf:about="https://research-explorer.ista.ac.at/record/11585">
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        <dc:title>Differences in galaxy colours are not just about the mass</dc:title>
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                <foaf:name></foaf:name>
                <foaf:surname></foaf:surname>
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        <bibo:abstract>Observations show that star-forming galaxies reside on a tight three-dimensional plane between mass, gas-phase metallicity and star formation rate (SFR), which can be explained by the interplay between metal-poor gas inflows, SFR and outflows. However, different metals are released on different time-scales, which may affect the slope of this relation. Here, we use central, star-forming galaxies with Mstar = 109.0−10.5 M from the EAGLE hydrodynamical simulation to examine three-dimensional relations between mass, SFR and chemical enrichment using absolute and relative C, N, O and Fe abundances. We show that the scatter is smaller when gas-phase α-enhancement is used rather than metallicity. A similar plane also exists for stellar α-enhancement, implying that present-day specific SFRs are correlated with long time-scale star formation histories. Between z = 0 and 1, the α-enhancement plane is even more insensitive to redshift than the plane using metallicity. However, it evolves at z &gt; 1 due to lagging iron yields. At fixed mass, galaxies with higher SFRs have star formation histories shifted toward late times, are more α-enhanced and this α-enhancement increases with redshift as observed. These findings suggest that relations between physical properties inferred from observations may be affected by systematic variations in α-enhancements.</bibo:abstract>
        <bibo:volume>5</bibo:volume>
        <bibo:startPage>984-985</bibo:startPage>
        <bibo:endPage>984-985</bibo:endPage>
        <dc:publisher>Springer Nature</dc:publisher>
        <bibo:doi rdf:resource="10.1038/s41550-021-01415-y" />
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