Far-Infrared to Millimeter Astrophysical Dust Emission. II: Comparison of the Two-Level Systems (TLS) model with Astronomical Data
arXiv:1107.5179 · doi:10.1051/0004-6361/201116862
Abstract
In a previous paper we proposed a new model for the emission by amorphous astronomical dust grains, based on solid-state physics. The model uses a description of the Disordered Charge Distribution (DCD) combined with the presence of Two-Level Systems (TLS) defects in the amorphous solid composing the grains. The goal of this paper is to confront this new model to astronomical observations of different Galactic environments in the FIR/submm, in order to derive a set of canonical model parameters to be used as a Galactic reference to be compared to in future Galactic and extragalactic studies. We confront the TLS model with existing astronomical data. We consider the average emission spectrum at high latitudes in our Galaxy as measured with FIRAS and WMAP, as well as the emission from Galactic compact sources observed with Archeops, for which an inverse relationship between the dust temperature and the emissivity spectral index has been evidenced. We show that, unlike models previously proposed which often invoke two dust components at different temperatures, the TLS model successfully reproduces both the shape of the Galactic SED and its evolution with temperature as observed in the Archeops data. The best TLS model parameters indicate a charge coherence length of \simeq 13 nm and other model parameters in broad agreement with expectations from laboratory studies of dust analogs. We conclude that the millimeter excess emission, which is often attributed to the presence of very cold dust in the diffuse ISM, is likely caused solely by TLS emission in disordered amorphous dust grains. We discuss the implications of the new model, in terms of mass determinations from millimeter continuum observations and the expected variations of the emissivity spectral index with wavelength and dust temperature. The implications for the analysis of the Herschel and Planck satellite data are discussed.
Accepted for publication in A&A (16 pages, 9 figures, 6 tables)
References in corpus (3)
- 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
- Low temperature FIR and submm mass absorption coefficient of interstellar silicate dust analogues
Cited by in corpus (44)
- Andromeda's Dust
- An Overview of the Dwarf Galaxy Survey
- The pre-launch Planck Sky Model: a model of sky emission at submillimetre to centimetre wavelengths
- Planck intermediate results. XXII. Frequency dependence of thermal emission from Galactic dust in intensity and polarization
- Planck intermediate results. XVII. Emission of dust in the diffuse interstellar medium from the far-infrared to microwave frequencies
- Magnetic Nanoparticles in the Interstellar Medium: Emission Spectrum and Polarization
- Multi-temperature mapping of dust structures throughout the Galactic Plane using the PPMAP tool with Herschel Hi-GAL data
- Modeling Dust and Starlight in Galaxies Observed by Spitzer and Herschel: NGC 628 and NGC 6946
- Observational Constraints on the Physical Properties of Interstellar Dust in the Post-Planck Era
- Low temperature FIR and submm mass absorption coefficient of interstellar silicate dust analogues
- Review: Far-Infrared Instrumentation and Technology Development for the Next Decade
- The Hi-GAL catalogue of dusty filamentary structures in the Galactic Plane
- Planck intermediate results. XIV. Dust emission at millimetre wavelengths in the Galactic plane
- Galactic cold cores VI. Dust opacity spectral index
- The Submm and mm Excess of the SMC: Magnetic Dipole Emission from Magnetic Nanoparticles?
- Low temperature MIR to submillimeter mass absorption coefficient of interstellar dust analogues I: Mg-rich glassy silicates
- Modelling the dust emission from dense interstellar clouds: disentangling the effects of radiative transfer and dust properties
- A Dust Twin of Cas A: Cool Dust and 21-micron Silicate Dust Feature in the Supernova Remnant G54.1+0.3
- The effect of temperature mixing on the observable (T,beta)-relation of interstellar dust clouds
- Evidence for Large Grains in the Star-forming Filament OMC-2/3
- Dust Emissivity in the Star-Forming Filament OMC 2/3
- Detection and characterization of a 500 mic dust emissivity excess in the Galactic Plane using Herschel/Hi-GAL observations
- The Simons Observatory: Galactic Science Goals and Forecasts
- Determination of the Cosmic Infrared Background from COBE/FIRAS and Planck HFI Observations
- Earliest phases of star formation (EPoS): Dust temperature distributions in isolated starless cores
- Stratified NH and ND emission in the prestellar core 16293E in L1689N
- ORion Alma New GEneration Survey (ORANGES) I. Dust continuum and free-free emission of OMC-2/3 filament protostars
- CENN: A fully convolutional neural network for CMB recovery in realistic microwave sky simulations
- CO(2-1) Survey at 9 parsec resolution in the SMC
- Zooming in on Supernova 1987A at sub-mm wavelengths
- AzTEC Survey of the Central Molecular Zone: Increasing Spectral Index of Dust with Density
- Modeling and predicting the shape of the far-infrared to submillimeter emission in ultra-compact HII regions and cold clumps
- Confirmation of Enhanced Long Wavelength Dust Emission in OMC 2/3
- The stratification of ISM properties in the edge-on galaxy NGC 891 revealed by NIKA2
- Foreground Bias From Parametric Models of Far-IR Dust Emission
- Enhanced dust emissivity power-law index along the western H filament of NGC 1569
- Toward a better understanding of the mid-infrared emission in the LMC
- Thermal emission from the amorphous dust: An alternative possibility of the origin of the anomalous microwave emission
- Mitigating Bias in CMB B-modes from Foreground Cleaning Using a Moment Expansion
- A study of 90 GHz dust emissivity on molecular cloud and filament scales
- Assessment of Models of Galactic Thermal Dust Emission Using COBE/FIRAS and COBE/DIRBE Observations
- The PRIMA promise of deciphering interstellar dust evolution with observations of the nearby Universe
- Exploring the interstellar medium of NGC 891 at millimeter wavelengths using the NIKA2 camera
- Modeling Long-Wavelength Amorphous Dust Emission Based on the Physically Motivated Soft-Potential Model