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Chemical evolution of galaxies: emerging dust and the different gas phases in a new multiphase code

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arxiv 1904.11215 v2 pith:2P36OUIK submitted 2019-04-25 astro-ph.GA

classification astro-ph.GA
keywords dustevolutionmodelchemicaldatadifferentdiscussgalaxy
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Dust plays an important role in the evolution of a galaxy, since it is one of the main ingredients for efficient star formation. Dust grains are also a sink/source of metals when they are created/destroyed, and, therefore, a self-consistent treatment is key in order to correctly model chemical evolution. In this work, we discuss the implementation of dust physics into our current multiphase model, which also follows the evolution of atomic, ionised and molecular gas. Our goal is to model the conversion rates among the different phases of the interstellar medium, including the creation, growth and destruction of dust, based on physical principles rather than phenomenological recipes inasmuch as possible. We first present the updated set of differential equations and then discuss the results. We calibrate our model against observations of the Milky Way Galaxy and compare its predictions with extant data. Our results are broadly consistent with the observed data for intermediate and high metallicities, but the models tend to produce more dust than observed in the low metallicity regime.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Interstellar dust production, destruction and effects of dust depletion in galaxies

    astro-ph.GA 2025-06 unverdicted novelty 2.0 of 10

    The paper reviews dust production, destruction and growth processes in galaxies, compiles literature data on comoving dust mass density, presents evidence for and against interstellar dust growth, and identifies the h...

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