Detection and characterization of a 500 mic dust emissivity excess in the Galactic Plane using Herschel/Hi-GAL observations
arXiv:1111.1852 · doi:10.1051/0004-6361/201117956
Abstract
Past and recent observations have revealed unexpected variations in the FIR-mm dust emissivity. In the Herschel spectral range, those are often referred to as a 500μm emission excess. Several dust emission models have been developed to interpret astrophysical data in the FIR-mm domain. However, these are commonly unable to fully reconcile theoretical predictions with observations. In contrast, the recently revised two level system (TLS) model seems to provide a promising way of interpreting the existing data. The newly available Herschel Hi-GAL data which covers most of the inner Milky-Way offers a unique opportunity to investigate possible variations in the dust emission properties both with wavelength and environment. By combining the IRIS 100 μm with the Hi-GAL 160, 250, 350 and 500 μm data, we model the dust emission spectra in each pixel of the Hi-GAL maps, using both the TLS model and, for comparison, a single modified black-body fit. The effect of temperature mixing along the line of sight is investigated. We find a slight decrease in the dust temperature with distance from the Galactic center. We also report the detection of a significant 500 μm emissivity excess in the peripheral regions of the plane (35\circ<|l|<70\circ) of about 13-15% of the emissivity, that can reach up to 20% in some HII regions. We present the spatial distribution of the best-fit values for the two main parameters of the TLS model, i.e. the charge correlation length, lc, used to characterize the disordered charge distribution (DCD) part of the model, and the amplitude A of the TLS processes, with respect to the DCD effect. They highlight the plausible existence of an overall gradient with distance to the Galactic center. A comparison with previous findings in the solar neighborhood shows that the local value of the excess is less than expected from the Galactic gradient observed here.
Accepted for publication in A&A; 12 pages, 10 figures, 1 table
References in corpus (6)
- Non-Standard Grain Properties, Dark Gas Reservoir, and Extended Submillimeter Excess, Probed by Herschel in the Large Magellanic Cloud
- Far-infrared to millimeter astrophysical dust emission I: A model based on physical properties of amorphous solids
- Submillimetre point sources from the Archeops experiment: Very Cold Clumps in the Galactic Plane
- Dust processing in photodissociation regions - Mid-IR emission modelling
- Far-Infrared to Millimeter Astrophysical Dust Emission. II: Comparison of the Two-Level Systems (TLS) model with Astronomical Data
- A Broadband Study of Galactic Dust Emission
Cited by in corpus (29)
- Planck 2013 results. XI. All-sky model of thermal dust emission
- Hi-GAL, the Herschel infrared Galactic Plane Survey: photometric maps and compact source catalogues. First data release for Inner Milky Way: +68°> l > -70°
- The Interstellar dust properties of nearby galaxies
- Dust and Gas in the Magellanic Clouds from the HERITAGE Herschel Key Project. I. Dust Properties and Insights into the Origin of the Submm Excess Emission
- Star formation in Galactic spiral arms and the inter-arm regions
- Planck intermediate results. XIV. Dust emission at millimetre wavelengths in the Galactic plane
- Galactic cold cores VI. Dust opacity spectral index
- Cool dust heating and temperature mixing in nearby star-forming galaxies
- Low temperature MIR to submillimeter mass absorption coefficient of interstellar dust analogues I: Mg-rich glassy silicates
- Dust models post-Planck: constraining the far-infrared opacity of dust in the diffuse interstellar medium
- Star formation towards the Galactic HII region RCW120
- The Spatial Distribution of Dust and Stellar Emission of the Magellanic Clouds
- Planck intermediate results. XXV. The Andromeda Galaxy as seen by Planck
- Herschel Far-Infrared Photometry of the Swift Burst Alert Telescope Active Galactic Nuclei Sample of the Local Universe. II. SPIRE Observations
- Herschel and SCUBA-2 observations of dust emission in a sample of Planck cold clumps
- Spatially resolving the dust properties and submillimetre excess in M 33
- Investigating the presence of 500 um submillimeter excess emission in local star forming galaxies
- The interstellar medium in Andromeda's dwarf spheroidal galaxies: I. Content and origin of the interstellar dust
- HII regions and high-mass starless clump candidates I: Catalogs and properties
- Modeling and predicting the shape of the far-infrared to submillimeter emission in ultra-compact HII regions and cold clumps
- Characterization of dense Planck clumps observed with Herschel and SCUBA-2
- Toward a better understanding of the mid-infrared emission in the LMC
- Revisiting the dust properties in the molecular clouds of the Large Magellanic Cloud
- Alignment and Rotational Disruption of Dust Grains in the Galactic Centre Revealed by Polarized Dust Emission
- Assessment of Models of Galactic Thermal Dust Emission Using COBE/FIRAS and COBE/DIRBE Observations
- Comparison of modified black-body fits for the estimation of dust optical depths in interstellar clouds
- Dust emission and extinction in the Orion OMC-3 cloud
- Modelling of dust emission of a filament in the Taurus molecular cloud
- Far-infrared to centimeter emission of very nearby galaxies with archival data