The degeneracy between dust colour temperature and spectral index. Comparison of methods for estimating the beta(T) relation
arXiv:1305.2130 · doi:10.1051/0004-6361/201220910
Abstract
Sub-millimetre dust emission provides information on the physics of interstellar clouds and dust. Noise can produce anticorrelation between the colour temperature T_C and the spectral index beta. This must be separated from the intrinsic beta(T) relation of dust. We compare methods for the analysis of the beta(T) relation. We examine sub-millimetre observations simulated as simple modified black body emission or using 3D radiative transfer modelling. In addition to chi^2 fitting, we examine the results of the SIMEX method, basic Bayesian model, hierarchical models, and one method that explicitly assumes a functional form for beta(T). All methods exhibit some bias. Bayesian method shows significantly lower bias than direct chi^2 fits. The same is true for hierarchical models that also result in a smaller scatter in the temperature and spectral index values. However, significant bias was observed in cases with high noise levels. Beta and T estimates of the hierarchical model are biased towards the relation determined by the data with the highest S/N ratio. This can alter the recovered beta(T) function. With the method where we explicitly assume a functional form for the beta(T) relation, the bias is similar to the Bayesian method. In the case of an actual Herschel field, all methods agree, showing some degree of anticorrelation between T and beta. The Bayesian method and the hierarchical models can both reduce the noise-induced parameter correlations. However, all methods can exhibit non-negligible bias. This is particularly true for hierarchical models and observations of varying signal-to-noise ratios and must be taken into account when interpreting the results.
Submitted to A&A, 18 pages
References in corpus (5)
- 2MASS wide field extinction maps - I. The Pipe nebula
- Comparing Star Formation on Large Scales in the c2d Legacy Clouds: Bolocam 1.1 mm Dust Continuum Surveys of Serpens, Perseus, and Ophiuchus
- 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
- A Corona Australis cloud filament seen in NIR scattered light I. Comparison with extinction of background stars
Cited by in corpus (49)
- Planck 2013 results. XI. All-sky model of thermal dust emission
- 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
- PACS photometry of the Herschel Reference Survey - Far-infrared/sub-millimeter colours as tracers of dust properties in nearby galaxies
- 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
- A resolved analysis of cold dust and gas in the nearby edge-on spiral NGC 891
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- Low-temperature MIR to submillimeter mass absorption coefficient of interstellar dust analogues II: Mg and Fe-rich amorphous silicates
- Evidence for Large Grains in the Star-forming Filament OMC-2/3
- Measurements of the dust properties in z~1-3 SMGs with ALMA
- A Dust spectral energy distribution model with hierarchical Bayesian inference. I. Formalism & benchmarking
- Dust Emissivity in the Star-Forming Filament OMC 2/3
- Untangling the Nature of Spatial Variations of Cold Dust Properties in Star Forming Galaxies
- Variations between Dust and Gas in the Diffuse Interstellar Medium
- Remarkable analytic relations among greybody parameters
- Multi-scale analysis of the Monoceros OB 1 star-forming region: II. Colliding filaments in the Monoceros OB1 molecular cloud
- Dust spectrum and polarisation at 850 um in the massive IRDC G035.39-00.33
- Herschel and SCUBA-2 observations of dust emission in a sample of Planck cold clumps
- Properties of massive star-forming clumps with infall motions
- Dust moments: towards a new modelling of the galactic dust emission for CMB B-modes analysis
- Fragmentation and filaments at the onset of star and cluster formation: SABOCA 350 m view of ATLASGAL selected massive clumps
- JINGLE V: Dust properties of nearby galaxies derived from hierarchical Bayesian SED fitting
- Multiwavelength study of the high-latitude cloud L1642: chain of star formation
- The JCMT Gould Belt Survey: the effect of molecular contamination in SCUBA-2 observations of Orion A
- Investigating the presence of 500 um submillimeter excess emission in local star forming galaxies
- z-GAL -- A NOEMA spectroscopic redshift survey of bright Herschel galaxies: [II] Dust properties
- Systematic biases in determining dust attenuation curves through galaxy SED fitting
- A Herschel view of IC 1396 A: Unveiling the different sequences of star formation
- The cold interstellar medium of a normal sub- galaxy at the end of reionization
- IR characteristic emission and dust properties of star-forming galaxies at 4.5 z 6.2
- Modeling and predicting the shape of the far-infrared to submillimeter emission in ultra-compact HII regions and cold clumps
- AzTEC Survey of the Central Molecular Zone: Increasing Spectral Index of Dust with Density
- 2 mm GISMO Observations of the Galactic Center. I. Dust Emission
- Unveiling the stellar origin of the Wolf-Rayet nebula NGC6888 through infrared observations
- Characterization of dense Planck clumps observed with Herschel and SCUBA-2
- Cold Dust in Hot Regions
- Modelling the 3D physical structure of astrophysical sources with GASS
- Assessment of Models of Galactic Thermal Dust Emission Using COBE/FIRAS and COBE/DIRBE Observations
- Dust in the Eye of Andromeda
- Estimation of high-resolution dust column density maps: Empirical model fits
- The dust-star interplay in late-type galaxies at z < 0.5: forecasts for the JWST
- Modelling of dust emission of a filament in the Taurus molecular cloud
- Comparison of modified black-body fits for the estimation of dust optical depths in interstellar clouds
- The Dust-Selected Molecular Clouds in the Northeast Region of the Small Magellanic Cloud
- Far-infrared to centimeter emission of very nearby galaxies with archival data
- Dust Temperature Profiles in Dense Cores Associated With Massive Star-Forming Regions
- The Planck submillimeter properties of Galactic high-mass star forming regions: dust temperatures, luminosities, masses and Star Formation Efficiency
- Beetroots: spatially-regularized Bayesian inference of physical parameter maps -- Application to Orion