Attenuation law of normal disc galaxies with clumpy distributions of stars and dust
arXiv:astro-ph/0502067 · doi:10.1111/j.1365-2966.2005.08890.x
Abstract
We investigate the attenuation law seen through an interstellar medium (ISM) with clumpy spatial distributions of stars and dust. The clumpiness of the dust distribution is introduced by a multi-phase ISM model. We solve a set of radiative transfer equations with multiple anisotropic scatterings through the clumpy ISM in a 1-D plane-parallel geometry by using the mega-grain approximation, in which dusty clumps are regarded as very large particles (i.e. mega-grains). The clumpiness of the stellar distribution is introduced by the youngest stars embedded in the clumps. We assume a smooth spatial distribution for older stars. The youngest stars are surrounded by denser dusty gas and suffer stronger attenuation than diffuse older stars (i.e. age-selective attenuation). The apparent attenuation law is a composite of the attenuation laws for the clumpy younger stars and for the diffuse older stars with a luminosity weight. In general, the stellar population dominating the luminosity changes from older stars to younger stars as the wavelength decreases. This makes the attenuation law steep; the composite attenuation rapidly increases from small attenuation for older stars at a long wavelength to large attenuation for younger stars at a short wavelength. The resultant attenuation law of normal disc galaxies is expected to be much steeper than that of starburst galaxies observed by Calzetti et al. Finally, the Calzetti's attenuation law is regarded as a special case with a large density in our framework.
MNRAS accepted, 13 pages, 14 figures
References in corpus (7)
- The Galaxy Evolution Explorer: A Space Ultraviolet Survey Mission
- Dust attenuation in the nearby Universe: comparison between galaxies selected in the ultraviolet or in the infrared
- Star formation history and dust attenuation in galaxies drawn from ultraviolet surveys
- Modelling the spectral energy distribution of galaxies. III. Attenuation of stellar light in spiral galaxies
- Dust Attenuation in Late-Type Galaxies. I. Effects on Bulge and Disk Components
- Modelling the spectral energy distribution of galaxies. IV Correcting apparent disk scalelengths and central surface brightnesses for the effect of dust at optical and near-infrared wavelengths
- Attenuation caused by a distant Isothermal Turbulent Screen
Cited by in corpus (52)
- Efficient 3D NLTE dust radiative transfer with SKIRT
- The Dust Attenuation Law in Galaxies
- Encoding the infrared excess (IRX) in the NUVrK color diagram for star-forming galaxies
- The extinction law at high redshift and its implications
- The MOSDEF Survey: the Variation of the Dust Attenuation Curve with Metallicity
- The VIMOS Public Extragalactic Redshift Survey (VIPERS). A precise measurement of the galaxy stellar mass function and the abundance of massive galaxies at redshifts 0.5<z<1.3
- Characterizing the UV-to-NIR shape of the dust attenuation curve of IR luminous galaxies up to z2
- The distribution of interstellar dust in CALIFA edge-on galaxies via oligochromatic radiative transfer fitting
- Radiative Transfer Model of Dust Attenuation Curves in Clumpy, Galactic Environments
- Dust scaling relations in a cosmological simulation
- Dust attenuation and Halpha emission in a sample of galaxies observed with Herschel at
- Evaluating and Improving Semi-analytic modelling of Dust in Galaxies based on Radiative Transfer Calculations
- FitSKIRT: genetic algorithms to automatically fit dusty galaxies with a Monte Carlo radiative transfer code
- Dust properties in M31.I.Basic properties and a discussion on age-dependent dust heating
- Galaxy simulation with the evolution of grain size distribution
- Evolution of dust extinction curves in galaxy simulation
- A model for the infrared dust emission from forming galaxies
- Radiative equilibrium estimates of dust temperature and mass in high-redshift galaxies
- Characterizing Dust Attenuation in Local Star Forming Galaxies: Inclination Effects and the 2175Å Feature
- Self-consistent modelling of aromatic dust species and extinction curves in galaxy evolution
- Towards understanding the relation between the gas and the attenuation in galaxies at kpc scales
- Lyman `bump' galaxies - II. A possible signature of massive extremely metal-poor or metal-free stars in z=3.1 Ly-alpha emitters
- The Structure of Massive Star-Forming Galaxies from JWST and ALMA: Dusty, High Redshift Disk Galaxies
- The ALPINE-ALMA [CII] survey: dust attenuation curves at z=4.4-5.5
- Effects of dust scattering albedo and 2175 A bump on ultraviolet colours of normal disc galaxies
- A Bayesian Population Model for the Observed Dust Attenuation in Galaxies
- CLARA's view on the escape fraction of Lyman-Alpha photons in high redshift galaxies
- Investigation of dust attenuation and star formation activity in galaxies hosting GRBs
- Galaxies with grains: unraveling dust evolution and extinction curves with hydrodynamical simulations
- X-shooting GRBs at high redshift: probing dust production history
- Structure of the interstellar medium around Cas A
- Galaxy inclination and the IRX-beta relation: Effects on UV star-formation rate measurements at intermediate to high redshifts
- Is GRB 050904 at z=6.3 absorbed by dust?
- Geometry effects on dust attenuation curves with different grain sources at high redshift
- Dust masses of galaxies from SED fitting and ALMA upper limits
- Dust evolution processes constrained by extinction curves in nearby galaxies
- The dust attenuation law in quasars
- The cosmic spectral energy distribution in the EAGLE simulation
- Expected dust grain size distributions in galaxies detected by ALMA at
- Estimating Dust Temperature and Far-IR Luminosity of High-Redshift Galaxies using ALMA Single-Band Continuum Observations
- Dust Attenuation in Clumpy, Star-Forming Galaxies at 0.07 < z < 0.14
- Spectroscopy and Stellar Populations of Star-forming Galaxies at z~3 in the Hubble Deep Field - South
- Effects of grain shattering by turbulence on extinction curves in starburst galaxies
- First Light And Reionisation Epoch Simulations (FLARES) XII: The consequences of star-dust geometry on galaxies in the EoR
- The need for multicomponent dust attenuation in modeling nebular emission: Constraints from SDSS-IV MaNGA
- The mass-dependent UVJ diagram at cosmic noon: A challenge for galaxy evolution models and dust radiative transfer
- A new galaxy spectral energy distribution model consistent with the evolution of dust
- Simulated vs. observed UV emission at high redshift: a hint for a clumpy ISM?
- Effects of rotational disruption on the evolution of grain size distribution in galaxies
- Star-dust geometry main determinant of dust attenuation in galaxies
- "Zombie" or active? An alternative explanation to the properties of star-forming galaxies at high redshift
- Non-Parametric Attenuation Curves in Local Star-Forming Galaxies: Geometry Effect, Dust Evolution, and ISS