International audienceContext. Mass estimates of interstellar clouds from far-infrared and submillimetre mappings depend on the assumed dust absorption cross-section for radiation at those wavelengths.Aims. The aim is to determine the far-IR dust absorption cross-section in a starless, dense core located in Corona Australis. The value is needed for determining of the core mass and other physical properties. It can also have a bearing on the evolutionary stage of the core.Methods. We correlated near-infrared stellar H − Ks colour excesses of background stars from NTT/SOFI with the far-IR optical depth map, τFIR, derived from Herschel 160, 250, 350, and 500 μm data. The...
Context. The thermal emission of dust grains is a powerful tool for probing cold, dense regions of m...
International audienceContext. The Galactic Cold Cores project has carried out Herschel photometric ...
International audienceContext. The project Galactic Cold Cores has carried out Herschel photometric ...
International audienceContext. Mass estimates of interstellar clouds from far-infrared and ...
Context. Mass estimates of interstellar clouds from far-infrared and submillimetre mappings depend o...
Context. Mass estimates of interstellar clouds from far-infrared and submillimetre mapping...
International audienceContext. The project Galactic Cold Cores has carried out Herschel photometric ...
© ESO, 2015. Aims. We aim at determining the spatial distribution of the gas and dust in star-formin...
Our aim is to compare the infrared properties of big, ``classical'' dust grains with visual extincti...
Context. The project Galactic Cold Cores has carried out Herschel photometric observations of inters...
Context. Within the project Galactic cold cores we are carrying out Herschel photometric observation...
Dust grains play a key role in the physics of star-forming regions, even though they constitute only...
The distributions of physical properties, such as the temperature, mass, or density of the dust grai...
Context. The thermal emission of dust grains is a powerful tool for probing cold, dense regions of m...
International audienceContext. The Galactic Cold Cores project has carried out Herschel photometric ...
International audienceContext. The project Galactic Cold Cores has carried out Herschel photometric ...
International audienceContext. Mass estimates of interstellar clouds from far-infrared and ...
Context. Mass estimates of interstellar clouds from far-infrared and submillimetre mappings depend o...
Context. Mass estimates of interstellar clouds from far-infrared and submillimetre mapping...
International audienceContext. The project Galactic Cold Cores has carried out Herschel photometric ...
© ESO, 2015. Aims. We aim at determining the spatial distribution of the gas and dust in star-formin...
Our aim is to compare the infrared properties of big, ``classical'' dust grains with visual extincti...
Context. The project Galactic Cold Cores has carried out Herschel photometric observations of inters...
Context. Within the project Galactic cold cores we are carrying out Herschel photometric observation...
Dust grains play a key role in the physics of star-forming regions, even though they constitute only...
The distributions of physical properties, such as the temperature, mass, or density of the dust grai...
Context. The thermal emission of dust grains is a powerful tool for probing cold, dense regions of m...
International audienceContext. The Galactic Cold Cores project has carried out Herschel photometric ...
International audienceContext. The project Galactic Cold Cores has carried out Herschel photometric ...