Context. Dust grains absorb the interstellar far ultra-violet and visible photons and re-emit them in far-infrared (FIR) wavebands. The dust FIR continuum can be predicted by a grid of models using various values of the interstellar radiation field. Aims. We analyze the dust continuum emission in two Hi-GAL science-demonstration phase (SDP) fields using both the radiative transfer code, Cloudy, and the DustEM dust model, to explore the effect of radiative transfer on dust temperature. The 500 μm sub-millimeter excess emission and the very small grain (VSG) contribution to the 70 μm intensity are investigated by spectral energy distribution (SED) fitting...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Past and recent observations have revealed unexpected variations in the far-infrared - mill...
Context. Dust grains absorb the interstellar far ultra-violet and visible photons and re-e...
Context. Dust emission is increasingly used as a tracer of the mass in the interstellar medium. With...
Context. Past and recent observations have revealed unexpected variations in the far-infrared – mill...
Aims. In a previous paper we proposed a new model for the emission by amorphous astronomical dust gr...
Context. Most of the modelling of the interstellar dust infrared emission spectrum is done by assumi...
Context. Most of the modelling of the interstellar dust infrared emission spectrum is done by assumi...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Most of the modelling of interstellar dust infrared emission spectrum is done by assuming s...
Context. Most of the modelling of interstellar dust infrared emission spectrum is done by assuming s...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Most of the modelling of interstellar dust infrared emission spectrum is done by assuming s...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Past and recent observations have revealed unexpected variations in the far-infrared - mill...
Context. Dust grains absorb the interstellar far ultra-violet and visible photons and re-e...
Context. Dust emission is increasingly used as a tracer of the mass in the interstellar medium. With...
Context. Past and recent observations have revealed unexpected variations in the far-infrared – mill...
Aims. In a previous paper we proposed a new model for the emission by amorphous astronomical dust gr...
Context. Most of the modelling of the interstellar dust infrared emission spectrum is done by assumi...
Context. Most of the modelling of the interstellar dust infrared emission spectrum is done by assumi...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Most of the modelling of interstellar dust infrared emission spectrum is done by assuming s...
Context. Most of the modelling of interstellar dust infrared emission spectrum is done by assuming s...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Most of the modelling of interstellar dust infrared emission spectrum is done by assuming s...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
International audienceContext. Most of the modelling of the interstellar dust infrared emission spec...
Context. Past and recent observations have revealed unexpected variations in the far-infrared - mill...