We present a study of the depletion of CO in the IRDC G351.77-0.51. Knowledge of the degree of CO-depletion provides information on the physical conditions occurring in the innermost and the densest regions of molecular clouds. A key issue is the radius within which the CO is depleted (Rdep). To estimate the depletion map on the cloud scale, we use the dust continuum (Hi-Gal), combined with APEX C18O(2-1) line observations. We built a simple model to investigate the size of the CO-depleted region in G351. The model suggests that Rdep is lower than 0.12 pc where n(H2) is larger than 3 x 10**4 cm**-3. These results provide crucial information on the spatial scales on which different chemical processes operate in high-mass star forming regions...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
International audienceIn this paper, we analyze column density and temperature maps derived from Her...
Knowledge of the degree of CO-depletion provides information on the physical conditions occurring in...
An estimate of the degree of CO-depletion (fD) provides information on the physical conditions occur...
We present new results on CO depletion in a sample of nearby pre-stellar cores, based on observatio...
International audienceWe present a statistical comparison of CO depletion in a set of local molecula...
Context. Infrared dark clouds (IRDCs) are promising sites to study the earliest formation stages of ...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
We study the relationship between molecular gas and dust in the California Molecular Cloud over an u...
Context. Massive clumps associated with infrared dark clouds (IRDCs) are promising targets for study...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
International audienceIn this paper, we analyze column density and temperature maps derived from Her...
Knowledge of the degree of CO-depletion provides information on the physical conditions occurring in...
An estimate of the degree of CO-depletion (fD) provides information on the physical conditions occur...
We present new results on CO depletion in a sample of nearby pre-stellar cores, based on observatio...
International audienceWe present a statistical comparison of CO depletion in a set of local molecula...
Context. Infrared dark clouds (IRDCs) are promising sites to study the earliest formation stages of ...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
We study the relationship between molecular gas and dust in the California Molecular Cloud over an u...
Context. Massive clumps associated with infrared dark clouds (IRDCs) are promising targets for study...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
We analyse column density and temperature maps derived from Herschel dust continuum observations of ...
International audienceIn this paper, we analyze column density and temperature maps derived from Her...