An estimate of the degree of CO-depletion (fD) provides information on the physical conditions occurring in the innermost and densest regions of molecular clouds. A key parameter in these studies is the size of the depletion radius, i.e. the radius within which the C-bearing species, and in particular CO, are largely frozen on to dust grains. A strong depletion state (i.e. fD > 10, as assumed in our models) is highly favoured in the innermost regions of dark clouds, where the temperature is <20 K and the number density of molecular hydrogen exceeds a few × 104 cm−3. In this work, we estimate the size of the depleted region by studying the Infrared Dark Cloud (IRDC) G351.77−0.51. Continuum observations performed with the Herschel Space...
Context. Infrared dark clouds (IRDCs) harbor progenitors of high-mass stars. Little is known of the ...
Massive stars (M greater than or similar to 10M(circle dot)) form from collapse of parsec-scale mole...
International audienceContext. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are si...
An estimate of the degree of CO-depletion (fD) provides information on the physical conditions occur...
We present a study of the depletion of CO in the IRDC G351.77-0.51. Knowledge of the degree of CO-de...
Knowledge of the degree of CO-depletion provides information on the physical conditions occurring in...
Context. Infrared dark clouds (IRDCs) are promising sites to study the earliest formation stages of ...
Context. Massive clumps associated with infrared dark clouds (IRDCs) are promising targets for study...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
International audienceIn this paper, we analyze column density and temperature maps derived from Her...
International audienceInfrared dark clouds (IRDCs) are cold and dense reservoirs of gas potentially ...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
Context. Infrared dark clouds (IRDCs) harbor progenitors of high-mass stars. Little is known of the ...
Massive stars (M greater than or similar to 10M(circle dot)) form from collapse of parsec-scale mole...
International audienceContext. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are si...
An estimate of the degree of CO-depletion (fD) provides information on the physical conditions occur...
We present a study of the depletion of CO in the IRDC G351.77-0.51. Knowledge of the degree of CO-de...
Knowledge of the degree of CO-depletion provides information on the physical conditions occurring in...
Context. Infrared dark clouds (IRDCs) are promising sites to study the earliest formation stages of ...
Context. Massive clumps associated with infrared dark clouds (IRDCs) are promising targets for study...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
International audienceIn this paper, we analyze column density and temperature maps derived from Her...
International audienceInfrared dark clouds (IRDCs) are cold and dense reservoirs of gas potentially ...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
Context. Infrared dark clouds (IRDCs) harbor progenitors of high-mass stars. Little is known of the ...
Massive stars (M greater than or similar to 10M(circle dot)) form from collapse of parsec-scale mole...
International audienceContext. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are si...