We study the gravitational collapse of pre-stellar sources and the associated evolution of their chemical composition. We use the University of Grenoble Alpes Astrochemical Network (UGAN), which includes reactions involving the different nuclear-spin states of H2, H+3 , and of the hydrides of carbon, nitrogen, oxygen, and sulphur, for reactions involving up to seven protons. In addition, species-to-species rate coefficients are provided for the ortho/para interconversion of the H +3 + H2 system and isotopic variants. The composition of the medium is followed from an initial steady state through the early phase of isothermal gravitational collapse. Both the freeze-out of the molecules on to grains and the coagulation of the grain...
The availability of collisional rate coefficients is a prerequisite for an accurate interpretation o...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
We constructed two new models for deuterium and spin-state chemistry for the purpose of modeling the...
International audienceWe study the gravitational collapse of prestellar sources and the associated e...
The nuclear-spin chemistry of interstellar water is investigated using the University of Grenoble Al...
International audienceAims.We have studied the chemistry of nitrogen-bearing species during the init...
The gravitational collapse of a spherical cloud core is investigated by numerical calculations. The ...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
Aims.We have studied the chemistry of nitrogen-bearing species during the initial stages of protoste...
International audienceContext. Ammonia and its deuterated isotopologues probe physical conditions in...
Context. Ammonia and its deuterated isotopologues probe physical conditions in dense molecular cloud...
This is the final version. Available from OUP via the DOI in this recordWe investigate differences i...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
Context.We have studied the evolution of molecular gas during the early stages of protostellar colla...
The availability of collisional rate coefficients is a prerequisite for an accurate interpretation o...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
We constructed two new models for deuterium and spin-state chemistry for the purpose of modeling the...
International audienceWe study the gravitational collapse of prestellar sources and the associated e...
The nuclear-spin chemistry of interstellar water is investigated using the University of Grenoble Al...
International audienceAims.We have studied the chemistry of nitrogen-bearing species during the init...
The gravitational collapse of a spherical cloud core is investigated by numerical calculations. The ...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
Aims.We have studied the chemistry of nitrogen-bearing species during the initial stages of protoste...
International audienceContext. Ammonia and its deuterated isotopologues probe physical conditions in...
Context. Ammonia and its deuterated isotopologues probe physical conditions in dense molecular cloud...
This is the final version. Available from OUP via the DOI in this recordWe investigate differences i...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
Context.We have studied the evolution of molecular gas during the early stages of protostellar colla...
The availability of collisional rate coefficients is a prerequisite for an accurate interpretation o...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
We constructed two new models for deuterium and spin-state chemistry for the purpose of modeling the...