Effects of dust scattering albedo and 2175 A bump on ultraviolet colours of normal disc galaxies
arXiv:astro-ph/0605182 · doi:10.1111/j.1365-2966.2006.10499.x
Abstract
We discuss dust properties in the interstellar medium (ISM) of nearby normal galaxies, by comparing observations in the ultraviolet (UV) with simulations by a radiative transfer model. The observed UV colours of nearby galaxies show a reddening relative to their expected intrinsic colours. Some authors argued that the Milky Way dust cannot reproduce the reddening because of the prominent 2175 Åabsorption bump. Other authors proposed a reduction mechanism of the bump strength in an {\it attenuation law} derived from the ratio of the observed intensity to the intrinsic one through an age-selective attenuation (i.e., young stars are more attenuated selectively). We newly find that the wavelength dependence of the scattering albedo also has a strong effect on the UV colour; an albedo decreasing toward shorter wavelengths (except for the absorption bump range) produces a significant UV reddening. After comparing the observed UV colours of nearby normal galaxies with those expected from radiative transfer simulations assumed several dust models, we find two sorts of dust suitable for these galaxies: (1) dust with a bump and a smaller albedo for a shorter wavelength (except for the bump range), and (2) dust without any bump but with an almost constant albedo. If very small carbonaceous grains responsible for the common unidentified infrared emission band are also the bump carrier, the former dust is favorable. Finally, we derive mean attenuation laws of various dust models as a function of the UV attenuation, and derive some relations between the UV attenuation and observable/theoretical quantities.
MNRAS in press
Cited by in corpus (13)
- An Ultraviolet-to-Radio Broadband Spectral Atlas of Nearby Galaxies
- UV Dust Attenuation in Star-forming Galaxies: II Calibrating the A(UV) vs. L_TIR/L_UV relation
- Characterizing the UV-to-NIR shape of the dust attenuation curve of IR luminous galaxies up to z2
- Evaluating and Improving Semi-analytic modelling of Dust in Galaxies based on Radiative Transfer Calculations
- Presence of dust with a UV bump in massive, star-forming galaxies at 1 < z < 2.5
- Origin of Chromatic Features in Multiple Quasars -Variability, Dust, or Microlensing -
- Diversity of Galaxy Dust Attenuation Curves Drives the Scatter in the IRX-beta Relation
- G.A.S. II: Dust extinction in galaxies; Luminosity functions and InfraRed eXcess
- Characterizing Ultraviolet and Infrared Observational Properties for Galaxies. I. Influences of Dust Attenuation and Stellar Population Age
- Constraining the Stellar Populations and Star Formation Histories of Blue Compact Dwarf Galaxies with SED Fits
- Dust Attenuation Curves at z 0.8 from LEGA-C: Precise Constraints on the Slope and 2175 Bump Strength
- Characterizing Ultraviolet and Infrared Observational Properties for Galaxies. II. Features of Attenuation Law
- Relation of internal attenuation, dust emission, and the size of spiral galaxies. Calibration at low-z and how to use it as a cosmological test at high-z