We present detailed thermal and gas-phase chemical models for the envelope of the massive star-forming region AFGL 2591. By considering both time- and space-dependent chemistry, these models are used to study both the physical structure proposed by van der Tak et al. (1999, 2000), as well as the chemical evolution of this region. The model predictions are compared with observed abundances and column densities for 29 species. The observational data cover a wide range of physical conditions within the source, but significantly probe the inner regions where interesting high-temperature chemistry may be occurring. Taking appropriate care when comparing models with both emission and absorption measurements, we find that the majority of the chemi...
International audienceContext. In the context of the IRAM 30 m Large Program Gas phase Elemental abu...
Aims. Current star formation research centers the characterization of the physical and chemical prop...
The Asymptotic Giant Branch (AGB) phase is one of the final evolutionary phases of low- to intermedi...
We present detailed thermal and gas-phase chemical models for the envelope of the massive star-form...
Massive star formation exhibits an extremely rich chemistry. However, few evolutionary details are k...
Aims. In order to understand the observed molecular diversity in high-mass star-forming regions, we ...
Aims. In order to understand the observed molecular diversity in high-mass star-forming regions, we ...
The sulphur chemistry in nine regions in the earliest stages of high-mass star formation is studied ...
he observation of molecules in the interstellar medium gives information on the physic of the format...
Aims: The aim of this work is to understand the richness of chemical species observed in the isolate...
Context. We present a study of the sulphur chemistry evolution in the region Orion KL alon...
Artículo de publicación ISIAims. The aim of this work is to understand the richness of chemical spec...
Recent advances in the understanding of the chemical processes that occur during all stages of the f...
We studied the sulfur chemistry of massive star-forming regions through single-dish submillimeter sp...
International audienceAims. Current star formation research centers the characterization of the phys...
International audienceContext. In the context of the IRAM 30 m Large Program Gas phase Elemental abu...
Aims. Current star formation research centers the characterization of the physical and chemical prop...
The Asymptotic Giant Branch (AGB) phase is one of the final evolutionary phases of low- to intermedi...
We present detailed thermal and gas-phase chemical models for the envelope of the massive star-form...
Massive star formation exhibits an extremely rich chemistry. However, few evolutionary details are k...
Aims. In order to understand the observed molecular diversity in high-mass star-forming regions, we ...
Aims. In order to understand the observed molecular diversity in high-mass star-forming regions, we ...
The sulphur chemistry in nine regions in the earliest stages of high-mass star formation is studied ...
he observation of molecules in the interstellar medium gives information on the physic of the format...
Aims: The aim of this work is to understand the richness of chemical species observed in the isolate...
Context. We present a study of the sulphur chemistry evolution in the region Orion KL alon...
Artículo de publicación ISIAims. The aim of this work is to understand the richness of chemical spec...
Recent advances in the understanding of the chemical processes that occur during all stages of the f...
We studied the sulfur chemistry of massive star-forming regions through single-dish submillimeter sp...
International audienceAims. Current star formation research centers the characterization of the phys...
International audienceContext. In the context of the IRAM 30 m Large Program Gas phase Elemental abu...
Aims. Current star formation research centers the characterization of the physical and chemical prop...
The Asymptotic Giant Branch (AGB) phase is one of the final evolutionary phases of low- to intermedi...