Two-size approximation: a simple way of treating the evolution of grain size distribution in galaxies
arXiv:1412.3866 · doi:10.1093/mnras/stu2617
Abstract
Full calculations of the evolution of grain size distribution in galaxies are in general computationally heavy. In this paper, we propose a simple model of dust enrichment in a galaxy with a simplified treatment of grain size distribution by imposing a `two-size approximation'; that is, all the grain population is represented by small (grain radius a < 0.03 micron) and large (a > 0.03 micron) grains. We include in the model dust supply from stellar ejecta, destruction in supernova shocks, dust growth by accretion, grain growth by coagulation and grain disruption by shattering, considering how these processes work on the small and large grains. We show that this simple framework reproduces the main features found in full calculations of grain size distributions as follows. The dust enrichment starts with the supply of large grains from stars. At a metallicity level referred to as the critical metallicity of accretion, the abundance of the small grains formed by shattering becomes large enough to rapidly increase the grain abundance by accretion. Associated with this epoch, the mass ratio of the small grains to the large grains reaches the maximum. After that, this ratio converges to the value determined by the balance between shattering and coagulation, and the dust-to-metal ratio is determined by the balance between accretion and shock destruction. With a Monte Carlo simulation, we demonstrate that the simplicity of our model has an advantage in predicting statistical properties. We also show some applications for predicting observational dust properties such as extinction curves.
14 pages, 12 figures, accepted for publication in MNRAS
References in corpus (15)
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- Dust Formation and Survival in Supernova Ejecta
- Evolution of interstellar dust and stardust in the solar neighbourhood
- Fragmentation of star-forming clouds enriched with the first dust
- Dust Destruction in the High-Velocity Shocks Driven by Supernovae in the Early Universe
- Shattering and coagulation of dust grains in interstellar turbulence
- The dust budget crisis in high-redshift submillimetre galaxies
- Dust origin in late-type dwarf galaxies: ISM growth vs. type II supernovae
- The dust production rate of AGB stars in the Magellanic Clouds
- Decoding the stellar fossils of the dusty Milky Way progenitors
- The origin of dust in galaxies revisited: the mechanism determining dust content
- On the (in)variance of the dust-to-metals ratio in galaxies
- Evolution of grain size distribution in high-redshift dusty quasars: Integrating large amounts of dust and unusual extinction curves
- Evolution of dust and molecular hydrogen in the Magellanic System
- Evolution of dust content in galaxies probed by gamma-ray burst afterglows
Cited by in corpus (33)
- The Constant Average Relationship between Dust-obscured Star Formation and Stellar Mass from to
- Galaxy Simulation with Dust Formation and Destruction
- Dissecting the IRX - dust attenuation relation: exploring the physical origin of observed variations in galaxies
- Dust scaling relations in a cosmological simulation
- JINGLE -- IV. Dust, HI gas and metal scaling laws in the local Universe
- The Galactic Dust-Up: Modeling Dust Evolution in FIRE
- How much metals did the first stars provide to the ultra-faint dwarfs?
- Galaxies with grains: unraveling dust evolution and extinction curves with hydrodynamical simulations
- Populating H and CO in galaxy simulation with dust evolution
- The Origin of the Dust Extinction Curve in Milky Way-like Galaxies
- The co-evolution of molecular hydrogen and the grain size distribution in an isolated galaxy
- Dust evolution with MUPPI in cosmological volumes
- A Framework for Modeling Polycyclic Aromatic Hydrocarbon Emission in Galaxy Evolution Simulations
- A Dusty Locale: Evolution of Galactic Dust Populations from Milky Way to Dwarf-Mass Galaxies
- IR SED and Dust Masses of Sub-solar Metallicity Galaxies at z~2.3
- Metal and dust evolution in ALMA REBELS galaxies: insights for future JWST observations
- Dust evolution processes constrained by extinction curves in nearby galaxies
- The drop of cosmic dust abundance in a semi-analytic framework
- The dust attenuation law in quasars
- Dust diffusion in SPH simulations of an isolated galaxy
- Effects of dust evolution on the abundances of CO and H
- Chemical modelling of dust-gas chemistry within AGB outflows -- II. Effect of the dust-grain size distribution
- Dust grain size evolution in local galaxies: a comparison between observations and simulations
- Modelling the evolution and influence of dust in cosmological simulations that include the cold phase of the interstellar medium
- Charged grains and Kelvin Helmholtz instability in molecular clouds
- Effects of dust grain size distribution on the abundances of CO and H in galaxy evolution
- Cosmic evolution of grain size distribution in galaxies using the GC semi-analytic model
- The ALPINE-ALMA [CII] Survey: Unveiling the baryon evolution in the ISM of star-forming galaxies
- Intertwined Formation of , Dust, and Stars in Cosmological Simulations
- The fate of the interstellar medium in early-type galaxies. IV. The impact of stellar feedback, mergers, and black holes on the cold ISM in simulated galaxies
- Ashes of FIRE: Modeling Dust Grain Size Evolution in the Local Group with FIRE
- The cosmic journey of dust grains -- from nucleation to planetary system
- Dust and gas modelling in radiative transfer simulations of disc-dominated galaxies with RADMC-3D