Dust variations in the diffuse interstellar medium: constraints on Milky Way dust from Planck-HFI observations
arXiv:1503.07435 · doi:10.1051/0004-6361/201425523
Abstract
The Planck-HFI all-sky survey from 353 to 857GHz combined with the 100 microns IRAS show that the dust properties vary in the diffuse ISM at high Galactic latitude (1e19<NH<2.5e20 H/cm2). Our aim is to explain these variations with changes in the ISM properties and grain evolution. Our starting point is the latest core-mantle dust model. It consists of small aromatic-rich carbon grains, larger amorphous carbon grains with aliphatic-rich cores and aromatic-rich mantles, and amorphous silicates with Fe/FeS nano-inclusions covered by aromatic-rich carbon mantles. We explore whether variations in the radiation field or in the gas density distribution in the diffuse ISM could explain the observations. The dust properties are also varied in terms of mantle thickness, Fe/FeS inclusions, carbon abundance, and size distribution. Variations in the radiation field intensity and gas density distribution cannot explain the observed variations but radiation fields harder than the standard ISRF may participate in creating part of them. We further show that variations in the grain mantle thickness coupled with changes in the grain size distribution can reproduce most of the observations. We put a limit on the mantle thickness of the silicates (~10-15nm), and find that aromatic-rich mantles are needed for the carbon grains (at least 5-7.5nm thick). We also find that changes in the carbon abundance in the grains could explain part of the observed variations. Finally, we show that varying the composition of Fe/FeS inclusions in the silicates cannot account for the variations. With small variations in the dust properties, we are able to explain most of the variations in the dust emission observed by Planck-HFI in the diffuse ISM. We also find that the small realistic changes in the dust properties that we consider almost perfectly match the anti-correlation and scatter in the observed beta-T relation.
Accepted for publication in A&A (abstract modified to fit arxiv standards) Corrected version of the paper on the 30th of March 2015 (missing lines in Figs. 6a and 6c)
References in corpus (5)
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- An Analysis of the Shapes of Interstellar Extinction Curves. VI. The Near-IR Extinction Law
- A hidden reservoir of Fe/FeS in interstellar silicates?
- Dust Emission from the Perseus Molecular Cloud
Cited by in corpus (23)
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- Old and young stellar populations in DustPedia galaxies and their role in dust heating
- The Herschel Exploitation of Local Galaxy Andromeda (HELGA) VII: A SKIRT radiative transfer model and insights on dust heating
- The Physical Nature of Neutral Hydrogen Intensity Structure
- The spatial distribution of carbon dust in the early solar nebula and the carbon content of planetesimals
- Probing changes of dust properties along a chain of solar-type prestellar and protostellar cores in Taurus with NIKA
- The Herschel Virgo Cluster Survey. XX. Dust and gas in the foreground Galactic cirrus
- The essential elements of dust evolution: A viable solution to the interstellar oxygen depletion problem?
- All-sky census of Galactic high-latitude molecular intermediate-velocity clouds
- MUSE stares into the shadows: the high-resolution dust attenuation curve of NGC 5626
- The GALEX Ultraviolet Virgo Cluster Survey (GUViCS). V. Ultraviolet diffuse emission and cirrus properties in the Virgo cluster direction
- Determining thermal dust emission from Planck HFI data using a sparse, parametric technique
- The Fornax 3D project: dust mix and gas properties in the center of early-type galaxy FCC 167
- Probing the baryon cycle of galaxies with SPICA mid- and far-infrared observations
- Gas and Dust Properties in the Chamaeleon Molecular Cloud Complex based on the Optically Thick HI
- Evidence of dust grain evolution from extinction mapping in the IC 63 photodissociation region
- High-resolution HI and CO observations of high-latitude intermediate-velocity clouds
- Dust properties of the cometary globule Barnard 207 (LDN 1489)
- Quantifying the Interstellar Medium and Cosmic Rays in the MBM 53, 54, and 55 Molecular Clouds and the Pegasus Loop using Fermi-LAT Gamma-ray Observations
- First Resolved Dust Continuum Measurements of Individual Giant Molecular Clouds in the Andromeda Galaxy
- Constraining the Dust Opacity Law in Three Small and Isolated Molecular Clouds
- The unusual ISM in Blue and Dusty Gas Rich Galaxies (BADGRS)
- Study of the Cosmic Rays and Interstellar Medium in Local HI Clouds using Fermi-LAT Gamma-Ray Observations