International audienceWe present an extended version of the 2-phase gas-grain code NAUTILUS to the 3-phase modelling of gas and grain chemistry of cold cores. In this model, both the mantle and the surface are considered as chemically active. We also take into account the competition among reaction, diffusion and evaporation. The model predictions are confronted to ice observations in the envelope of low-mass and massive young stellar objects as well as toward background stars. Modelled gas-phase abundances are compared to species observed toward TMC-1 (CP) and L134N dark clouds. We find that our model successfully reproduces the observed ice species. It is found that the reaction-diffusion competition strongly enhances reactions with barri...
We present maps of the column densities of H2O, CO2 and CO ices towards the molecular cores B 35A, D...
Context. Abundant carbon-chain species have been observed towards lukewarm corinos L1527, B228, and ...
Under cold conditions in dense cores, gas-phase molecules and atoms are depleted from the gas-phase ...
International audienceWe present an extended version of the 2-phase gas-grain code NAUTILUS to the 3...
Context. Species abundances in the interstellar medium (ISM) strongly depend on the chemistry occurr...
International audienceIce is ubiquitous in the interstellar medium. We model the formation of the ma...
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...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210; Department...
Aims.We have recently developed a microscopic Monte Carlo approach to study surface chemistry on int...
We present a new gas-grain chemical model to constrain the effect of grain size distribution on mole...
Author Institution: The Ohio State UniversityAn understanding of the complex grain-surface chemistry...
Context. Astrochemical models commonly used to study the deuterium chemistry in starless cores consi...
Context. Under cold conditions in dense cores, gas-phase molecules and atoms are depleted from the g...
We present maps of the column densities of H2O, CO2 and CO ices towards the molecular cores B 35A, D...
Context. Abundant carbon-chain species have been observed towards lukewarm corinos L1527, B228, and ...
Under cold conditions in dense cores, gas-phase molecules and atoms are depleted from the gas-phase ...
International audienceWe present an extended version of the 2-phase gas-grain code NAUTILUS to the 3...
Context. Species abundances in the interstellar medium (ISM) strongly depend on the chemistry occurr...
International audienceIce is ubiquitous in the interstellar medium. We model the formation of the ma...
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...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210; Department...
Aims.We have recently developed a microscopic Monte Carlo approach to study surface chemistry on int...
We present a new gas-grain chemical model to constrain the effect of grain size distribution on mole...
Author Institution: The Ohio State UniversityAn understanding of the complex grain-surface chemistry...
Context. Astrochemical models commonly used to study the deuterium chemistry in starless cores consi...
Context. Under cold conditions in dense cores, gas-phase molecules and atoms are depleted from the g...
We present maps of the column densities of H2O, CO2 and CO ices towards the molecular cores B 35A, D...
Context. Abundant carbon-chain species have been observed towards lukewarm corinos L1527, B228, and ...
Under cold conditions in dense cores, gas-phase molecules and atoms are depleted from the gas-phase ...