Context. Chemical models of dense cloud cores often utilize the so-called pseudo-time-dependent approximation, in which the physical conditions are held fixed and uniform as the chemistry occurs. In this approximation, the initial abundances chosen, which are totally atomic in nature except for molecular hydrogen, are artificial. A more detailed approach to the chemistry of dense cold cores should include the physical evolution during their early stages of formation. Aims. Our major goal is to investigate the initial synthesis of molecular ices and gas-phase molecules as cold molecular gas begins to form behind a shock in the diffuse interstellar medium. The abundances calculated as the conditions evolve can then be utilized as rea...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
Context. The chemical composition of protoplanetary disks is expected to impact the composition of t...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
International audienceIce is ubiquitous in the interstellar medium. We model the formation of the ma...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210; Departmen...
Context. Methanol and its precursor formaldehyde are among the most studied organic molecules in the...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
International audienceWe investigate the molecular evolution in star forming cores from dense cloud ...
We investigate the molecular abundances in protostellar cores by solving the gas-grain chemical reac...
Context: Many chemical changes occur during the collapse of a molecular cloud to form a low-mass sta...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
35 pages, 10 figures,International audienceWe investigate molecular evolution in a star-forming core...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Interstellar matter is not inert, but is constantly evolving. On the one hand, its physical charact...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
Context. The chemical composition of protoplanetary disks is expected to impact the composition of t...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...
International audienceIce is ubiquitous in the interstellar medium. We model the formation of the ma...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210; Departmen...
Context. Methanol and its precursor formaldehyde are among the most studied organic molecules in the...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
International audienceWe investigate the molecular evolution in star forming cores from dense cloud ...
We investigate the molecular abundances in protostellar cores by solving the gas-grain chemical reac...
Context: Many chemical changes occur during the collapse of a molecular cloud to form a low-mass sta...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
35 pages, 10 figures,International audienceWe investigate molecular evolution in a star-forming core...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Interstellar matter is not inert, but is constantly evolving. On the one hand, its physical charact...
We have modeled the chemistry that occurs in the envelopes surrounding newborn stars as they are gra...
Context. The chemical composition of protoplanetary disks is expected to impact the composition of t...
We develop analytic approximations to the density evolution of prestellar cores, based on the result...