The evaporation of icy mantles, which have been formed on the surface of dust grains, is acknowledged to give rise to the rich chemistry that has been observed in the vicinity of hot cores and corinos. It has long been established that water ice is the dominant species within many astrophysical ices. However, other molecules found within astrophysical ices, particularly methanol, can influence the desorption of volatile species from the ice. Here we present a detailed investigation of the adsorption and desorption of methanol-containing ices, showing the effect that methanol has on the trapping and release of volatiles from model interstellar ices. OCS and CO2 have been used as probe molecules since they have been suggested to reside in wat...
Context. The formation of methanol (CH3OH) on icy grain mantles during the star formation cycle is m...
International audienceCold cores are an early step of star formation, characterized by densities > 1...
Aims: The gas-phase abundance of methanol in dark quiescent cores in the interstellar medium cannot ...
Context. Methanol is formed via surface reactions on icy dust grains. Methanol is also detected in t...
Interstellar methanol is only formed efficiently from hydrogenation of CO molecules accreted onto gr...
[EN] The desorption process of methanol in the hot cores of massive young stars is addressed in this...
The relevance of interstellar ice to the chemical complexity of the interstellar medium has dramatic...
Cold gas-phase water has recently been detected in a cold dark cloud, Barnard 5 located in the Perse...
The desorption of molecular ices from grain surfaces is important in a number of astrophysical envir...
Virtual meetingInternational audienceI. Introduction Ices throughout the ISM are exposed to differen...
Ices of mixtures of carbon dioxide and methanol have been studied in a range of temperatures relevan...
We have investigated the gas-phase chemistry in dense cores where ice mantles containing ethanol and...
Aims. Methanol ice is embedded in interstellar ice mantles present in dense molecular clouds. We aim...
Context. Methanol and complex organic molecules have been found in cold starless cores, where a stan...
After more than 30 yr of investigations, the nature of gas-grain interactions at low temperatures re...
Context. The formation of methanol (CH3OH) on icy grain mantles during the star formation cycle is m...
International audienceCold cores are an early step of star formation, characterized by densities > 1...
Aims: The gas-phase abundance of methanol in dark quiescent cores in the interstellar medium cannot ...
Context. Methanol is formed via surface reactions on icy dust grains. Methanol is also detected in t...
Interstellar methanol is only formed efficiently from hydrogenation of CO molecules accreted onto gr...
[EN] The desorption process of methanol in the hot cores of massive young stars is addressed in this...
The relevance of interstellar ice to the chemical complexity of the interstellar medium has dramatic...
Cold gas-phase water has recently been detected in a cold dark cloud, Barnard 5 located in the Perse...
The desorption of molecular ices from grain surfaces is important in a number of astrophysical envir...
Virtual meetingInternational audienceI. Introduction Ices throughout the ISM are exposed to differen...
Ices of mixtures of carbon dioxide and methanol have been studied in a range of temperatures relevan...
We have investigated the gas-phase chemistry in dense cores where ice mantles containing ethanol and...
Aims. Methanol ice is embedded in interstellar ice mantles present in dense molecular clouds. We aim...
Context. Methanol and complex organic molecules have been found in cold starless cores, where a stan...
After more than 30 yr of investigations, the nature of gas-grain interactions at low temperatures re...
Context. The formation of methanol (CH3OH) on icy grain mantles during the star formation cycle is m...
International audienceCold cores are an early step of star formation, characterized by densities > 1...
Aims: The gas-phase abundance of methanol in dark quiescent cores in the interstellar medium cannot ...