International audienceWe investigate the molecular abundances in protostellar cores by solving the gas-grain chemical reaction network. As a physical model of the core, we adopt a result of one-dimensional radiation-hydrodynamics calculation, which follows the contraction of an initially hydrostatic prestellar core to form a protostellar core. Temporal variation of molecular abundances is solved in multiple infalling shells, which enable us to investigate the spatial distribution of molecules in the evolving core. The shells pass through the warm region of T ~ 20 100 K in several 104 yr and falls onto the central star in ~100 yr after they enter the region of T > 100 K. We found that the complex organic species such as HCOOCH3 are formed ma...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
We investigate the molecular evolution that develops as star formation proceeds from molecular cloud...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
We investigate the molecular abundances in protostellar cores by solving the gas-grain chemical reac...
We investigate molecular evolution in a star-forming core that is initially a hydrostatic starless c...
35 pages, 10 figures,International audienceWe investigate molecular evolution in a star-forming core...
International audienceWe investigate the molecular evolution in star forming cores from dense cloud ...
We investigate the molecular evolution in star forming cores from dense cloud cores (nH ~ 104 cm-3, ...
We investigate the molecular evolution and D/H abundance ratios that develop as star formation proce...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
We investigate the molecular evolution and D/H abundance ratios that develop as star formation proce...
This thesis addresses the problem of complex molecule formation in the prestellar and hot core stage...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
We investigate the molecular evolution that develops as star formation proceeds from molecular cloud...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
We investigate the molecular abundances in protostellar cores by solving the gas-grain chemical reac...
We investigate molecular evolution in a star-forming core that is initially a hydrostatic starless c...
35 pages, 10 figures,International audienceWe investigate molecular evolution in a star-forming core...
International audienceWe investigate the molecular evolution in star forming cores from dense cloud ...
We investigate the molecular evolution in star forming cores from dense cloud cores (nH ~ 104 cm-3, ...
We investigate the molecular evolution and D/H abundance ratios that develop as star formation proce...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
International audienceWe investigate the molecular evolution and D/H abundance ratios that develop a...
We investigate the molecular evolution and D/H abundance ratios that develop as star formation proce...
This thesis addresses the problem of complex molecule formation in the prestellar and hot core stage...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
We investigate the molecular evolution that develops as star formation proceeds from molecular cloud...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...