JINGLE -- IV. Dust, HI gas and metal scaling laws in the local Universe
(2020)
JINGLE â IV. Dust, HâI gas, and metal scaling laws in the local universe
Monthly Notices of the Royal Astronomical Society Oxford University Press 496:3 (2020) 3668-3687
Abstract:
Scaling laws of dust, HâI gas, and metal mass with stellar mass, specific star formation rate, and metallicity are crucial to our understanding of the build-up of galaxies through their enrichment with metals and dust. In this work, we analyse how the dust and metal content varies with specific gas mass (MHâI/Mâ) across a diverse sample of 423 nearby galaxies. The observed trends are interpreted with a set of Dust and Element evolUtion modelS (DEUS) â including stellar dust production, grain growth, and dust destruction â within a Bayesian framework to enable a rigorous search of the multidimensional parameter space. We find that these scaling laws for galaxies with â1.0 âČ logâMHâI/Mâ âČ 0 can be reproduced using closed-box models with high fractions (37â89â per centâ ) of supernova dust surviving a reverse shock, relatively low grain growth efficiencies (Ï” = 30â40), and long dust lifetimes (1â2âGyr). The models have present-day dust masses with similar contributions from stellar sources (50â80â per centâ ) and grain growth (20â50â per centâ ). Over the entire lifetime of these galaxies, the contribution from stardust (>90â per centâ ) outweighs the fraction of dust grown in the interstellar medium (<10â per centâ ). Our results provide an alternative for the chemical evolution models that require extremely low supernova dust production efficiencies and short grain growth time-scales to reproduce local scaling laws, and could help solving the conundrum on whether or not grains can grow efficiently in the interstellar medium.LOFAR 144-MHz follow-up observations of GW170817
Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 494:4 (2020) 5110-5117
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Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 494:4 (2020) 6072-6102
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Astronomy & Astrophysics EDP Sciences 638 (2020) l11