The effects of variations in the gas-phase carbon-to-oxygen elemental abundance ratio (0.42 ≤ C/O ≤ 1.2) and the absolute gas-phase carbon and oxygen elemental abundances on calculated molecular concentrations have been studied for three gas-phase chemical models of dense interstellar clouds. Both the C and O elemental abundances were varied from their "low metal" values, in which C/O = 0.42. The results were compared with observations of the dark interstellar clouds TMC-1 and L134N, the latter being chosen because TMC-1, with its singularly rich component of large hydrocarbons and cyanopolyynes, may not represent dense cores universally. In general, variations in the gas-phase C and O elemental abundances have a large and time-dependent ef...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
Context: Oxygen is the third most abundant element in the universe, but its chemistry in the interst...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
The e†ects of variations in the gas-phase carbon-to-oxygen elemental abundance ratio (0.42 C/O 1.2)...
IAU Symposium 280, Poster 44, Session 2.International audienceDark cloud chemical models usually pre...
Context. Dark cloud chemical models usually predict large amounts of O2, often above observational l...
The low abundance of molecular oxygen in cold cores of interstellar clouds poses a continuing proble...
6 pages, 3 figures, accepted for publication in Astronomy & Astrophysics 2011International audienceC...
22 pags., 5 figs.We have developed the first gas-grain chemical model for oxygen fractionation (also...
We have investigated the gaseous and solid state molecular composition of dense interstellar materia...
International audienceChemical networks used for models of interstellar clouds contain many reaction...
Current gas-phase models of dense cloud chemistry contain molecules through approx 10 atoms in size....
GEMS is an IRAM 30 m Large Program whose aim is determining the elemental depletions and the ionizat...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
Recent studies of the gas-phase abundances of carbon and oxygen in diffuse clouds have suggested tha...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
Context: Oxygen is the third most abundant element in the universe, but its chemistry in the interst...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
The e†ects of variations in the gas-phase carbon-to-oxygen elemental abundance ratio (0.42 C/O 1.2)...
IAU Symposium 280, Poster 44, Session 2.International audienceDark cloud chemical models usually pre...
Context. Dark cloud chemical models usually predict large amounts of O2, often above observational l...
The low abundance of molecular oxygen in cold cores of interstellar clouds poses a continuing proble...
6 pages, 3 figures, accepted for publication in Astronomy & Astrophysics 2011International audienceC...
22 pags., 5 figs.We have developed the first gas-grain chemical model for oxygen fractionation (also...
We have investigated the gaseous and solid state molecular composition of dense interstellar materia...
International audienceChemical networks used for models of interstellar clouds contain many reaction...
Current gas-phase models of dense cloud chemistry contain molecules through approx 10 atoms in size....
GEMS is an IRAM 30 m Large Program whose aim is determining the elemental depletions and the ionizat...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
Recent studies of the gas-phase abundances of carbon and oxygen in diffuse clouds have suggested tha...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...
Context: Oxygen is the third most abundant element in the universe, but its chemistry in the interst...
Gas phase Elemental abundances in Molecular CloudS (GEMS) is an IRAM 30 m Large Program designed to ...