Far-reaching Dust Distribution in Galaxy Disks
arXiv:1607.01020 · doi:10.1093/mnras/stw1611
Abstract
In most studies of dust in galaxies, dust is only detected from its emission to approximately the optical radius of the galaxy. By combining the signal of 110 spiral galaxies observed as part of the Herschel Reference Survey, we are able to improve our sensitivity by an order-of-magnitude over that for a single object. Here we report the direct detection of dust from its emission that extends out to at least twice the optical radius. We find that the distribution of dust is consistent with an exponential at all radii with a gradient of ~-1.7 dex R. Our dust temperature declines linearly from ~25 K in the centre to 15 K at R from where it remains constant out to ~2.0 R. The surface-density of dust declines with radius at a similar rate to the surface-density of stars but more slowly than the surface-density of the star-formation rate. Studies based on dust extinction and reddening of high-redshift quasars have concluded that there are substantial amounts of dust in intergalactic space. By combining our results with the number counts and angular correlation function from the SDSS, we show that with Milky Way type dust we can explain the reddening of the quasars by the dust within galactic disks alone. Given the uncertainties in the properties of any intergalactic dust, we cannot rule out its existence, but our results show that statistical investigations of the dust in galactic halos that use the reddening of high-redshift objects must take account of the dust in galactic disks.
15 Pages, 7 Figures. Accepted to MNRAS 2016 July 4. Received 2016 July 4; in original form 2015 December 6
References in corpus (9)
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- Herschel-ATLAS/GAMA: a census of dust in optically selected galaxies from stacking at submillimetre wavelengths
- Cool dust heating and temperature mixing in nearby star-forming galaxies
- The Herschel exploitation of local galaxy Andromeda (HELGA) V: Strengthening the case for substantial interstellar grain growth
- The color excess of quasars with intervening DLA systems- Analysis of the SDSS data release five
- The star formation rate of CaII and damped Lyman-alpha absorbers at 0.4<z<1.3
- Untangling the Nature of Spatial Variations of Cold Dust Properties in Star Forming Galaxies
- Mg II Absorbing Galaxies: Morphologies and Kinematics
Cited by in corpus (14)
- DustPedia - A Definitive Study of Cosmic Dust in the Local Universe
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- Galaxy Simulation with Dust Formation and Destruction
- Dirt-cheap Gas Scaling Relations: Using Dust Absorption, Metallicity and Galaxy Size to Predict Gas Masses for Large Samples of Galaxies
- Nonparametric galaxy morphology from UV to submm wavelengths
- Dust in the outskirts of M31 and M33
- Wobbly discs -- corrugations seen in the dust lanes of edge-on galaxies
- JINGLE, a JCMT legacy survey of dust and gas for galaxy evolution studies: II. SCUBA-2 850 μm data reduction and dust flux density catalogues
- The distribution of dust in edge-on galaxies: I. The global structure
- xGASS: The connection between angular momentum, mass and atomic gas fraction in nearby galaxies
- The stratification of ISM properties in the edge-on galaxy NGC 891 revealed by NIKA2
- A Universal Relation of Dust Obscuration Across Cosmic Time
- Testing for relics of past strong buckling events in edge-on galaxies: Simulation predictions and data from SG
- Understanding the Universal Dust Attenuation Scaling Relation of Star-Forming Galaxies