Ultraviolet through Infrared Spectral Energy Distributions from 1000 SDSS Galaxies: Dust Attenuation
arXiv:0712.3573 · doi:10.1086/522960
Abstract
The meaningful comparison of models of galaxy evolution to observations is critically dependent on the accurate treatment of dust attenuation. To investigate dust absorption and emission in galaxies we have assembled a sample of ~1000 galaxies with ultraviolet (UV) through infrared (IR) photometry from GALEX, SDSS, and Spitzer and optical spectroscopy from SDSS. The ratio of IR to UV emission (IRX) is used to constrain the dust attenuation in galaxies. We use the 4000A break as a robust and useful, although coarse, indicator of star formation history (SFH). We examine the relationship between IRX and the UV spectral slope (a common attenuation indicator at high-redshift) and find little dependence of the scatter on 4000A break strength. We construct average UV through far-IR spectral energy distributions (SEDs) for different ranges of IRX, 4000A break strength, and stellar mass (M_*) to show the variation of the entire SED with these parameters. When binned simultaneously by IRX, 4000A break strength, and M_* these SEDs allow us to determine a low resolution average attenuation curve for different ranges of M_*. The attenuation curves thus derived are consistent with a lambda^{-0.7} attenuation law, and we find no significant variations with M_*. Finally, we show the relationship between IRX and the global stellar mass surface density and gas-phase-metallicity. Among star forming galaxies we find a strong correlation between IRX and stellar mass surface density, even at constant metallicity, a result that is closely linked to the well-known correlation between IRX and star-formation rate.
12 pages, 8 figures, 2 tables, appearing in the Dec 2007 GALEX special issue of ApJ Supp (29 papers)
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- Characterizing the UV-to-NIR shape of the dust attenuation curve of IR luminous galaxies up to z2
- The IRX-Beta Dust Attenuation Relation in Cosmological Galaxy Formation Simulations
- Dissecting the IRX - dust attenuation relation: exploring the physical origin of observed variations in galaxies
- Ultraviolet, Optical, and Infrared Constraints on Models of Stellar Populations and Dust Attenuation
- Characterizing Dust Attenuation in Local Star Forming Galaxies: Inclination Effects and the 2175Å Feature
- Diversity of Galaxy Dust Attenuation Curves Drives the Scatter in the IRX-beta Relation
- A new census of dust and polycyclic aromatic hydrocarbons at z=0.7-2 with JWST MIRI
- A Bayesian Population Model for the Observed Dust Attenuation in Galaxies
- Continuous Mid-Infrared Star Formation Rate Indicators: Diagnostics for 0<z<3 Star Forming Galaxies
- Geometry effects on dust attenuation curves with different grain sources at high redshift
- Characterizing Ultraviolet and Infrared Observational Properties for Galaxies. I. Influences of Dust Attenuation and Stellar Population Age
- A Direct Measurement of the Dust Extinction Curve in an Intermediate-Redshift Galaxy
- Variation of the Nebular Dust Attenuation Curve with the Properties of Local Star-forming Galaxies
- A comprehensive X-ray and multiwavelength study of the Colliding Galaxy Pair NGC2207/IC2163
- Characterizing Ultraviolet and Infrared Observational Properties for Galaxies. II. Features of Attenuation Law
- Quenching or Bursting: Star Formation Acceleration--A New Methodology for Tracing Galaxy Evolution
- A Universal Relation of Dust Obscuration Across Cosmic Time
- Decoding the IRX-β dust attenuation relation in star-forming galaxies at intermediate redshift
- Understanding the Universal Dust Attenuation Scaling Relation of Star-Forming Galaxies