The role of dust destruction and dust growth in the evolution of the interstellar medium
arXiv:2009.08051 · doi:10.1093/mnras/staa1554
Abstract
We use Milky Way-like chemodynamical simulations with a new treatment for dust destruction and growth to investigate how these two processes affect the properties of the interstellar medium in galaxies. We focus on the role of two specific parameters: f_des (a new parameter that determines the fraction of dust destroyed in a single gas particle surrounding supernova) and C_s (the probability that a metal atom or ion sticks to the dust grain after colliding, i.e., the sticking coefficient) in regulating the amount and distribution of dust, cold gas and metals in galaxies. We find that simulated galaxies with low f_des and/or high C_s values produce not only more dust, but they also have a shallower correlation between dust surface density and total gas surface density, and a steeper correlation between dust-to-gas ratio and metallicity. Only for values of f_des between 0.01 and 0.02, and of C_s between 0.5 and 1 our simulations produce an average slope of the dust-to-gas ratio versus metallicity relation consistent with observations. f_des values correspond to a range of a total fraction of dust destroyed by a single supernova between 0.42 and 0.44. Lastly, we compare predictions of several simulations (with different star formation recipes, gas fractions, central metallicities, and metallicity gradients) to the spatially resolved M101 galaxy, and conclude that metallicity is the primary driver of the spatial distribution of dust, while dust-to-gas ratio controls the cold gas distribution, as it regulates the atomic-to-molecular hydrogen conversion rate.
18 pages, 14 figures, 4 tables (the order of tables 3 and 4 is switched in the published version), published in MNRAS
References in corpus (19)
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Dust Formation and Survival in Supernova Ejecta
- The Evolution of Dust in the Early Universe with Applications to the Galaxy SDSS J1148+5251
- The Spitzer Survey of the Small Magellanic Cloud: FIR Emission and Cold Gas in the SMC
- Dust Destruction in the High-Velocity Shocks Driven by Supernovae in the Early Universe
- The Atomic to Molecular Transition and its Relation to the Scaling Properties of Galaxy Disks in the Local Universe
- The dust mass in Cassiopeia A from a spatially resolved Herschel analysis
- Modelling Dust Evolution in Galaxies with a Multiphase, Inhomogeneous ISM
- Galaxy Simulation with Dust Formation and Destruction
- The Structure of a Low-Metallicity Giant Molecular Cloud Complex
- The origin of dust in galaxies revisited: the mechanism determining dust content
- Dust-regulated galaxy formation and evolution:A new chemodynamical model with live dust particles
- Thermal and nonthermal dust sputtering in hydrodynamical simulations of the multiphase interstellar medium
- Where does galactic dust come from?
- The Molecular Interstellar Medium of the Local Group Dwarf NGC6822
- The Mass-Loss Return from Evolved Stars to the Large Magellanic Cloud II: Dust Properties for Oxygen-Rich Asymptotic Giant Branch Stars
- Stellar, gas and dark matter content of barred galaxies
- A Statistical Study of Photospheric Magnetic Field Changes During 75 Solar Flares
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- Bright Extragalactic ALMA Redshift Survey (BEARS) III: Detailed study of emission lines from 71 Herschel targets
- Late-time cosmic evolution of dust: solving the puzzle
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- Modelling the evolution and influence of dust in cosmological simulations that include the cold phase of the interstellar medium
- Effects of dust grain size distribution on the abundances of CO and H in galaxy evolution
- Star cluster formation from giant molecular clouds in the Small Magellanic Cloud about 2 Gyr ago: their origin, structures, and kinematics
- Photoelectric heating effects on the evolution of luminous disk galaxies
- Dust SEDs in Milky Way-like galaxies in the IllustrisTNG simulations based on the evolution of grain size distribution