Context. Ice desorption affects the evolution of the gas-phase chemistry during the protostellar stage, and also determines the chemical composition of comets forming in circumstellar disks. From observations, most volatile species are found in H2O-dominated ices. Aims. The aim of this study is first to experimentally determine how entrapment of volatiles in H2O ice depends on ice thickness, mixture ratio and heating rate, and second, to introduce an extended three-phase model (gas, ice surface and ice mantle) to describe ice mixture desorption with a minimum number of free parameters. Methods. Thermal H2O:CO2 ice desorption is investigated in temperat...
Context. Up to 90% of the chemical reactions during star formation occurs on ice surfaces, probably ...
Aims. Solid O2 has been proposed as a possible reservoir for molecular oxygen in dense clouds throug...
The desorption of molecular ices from grain surfaces is important in a number of astrophysical envir...
Context. Ice desorption affects the evolution of the gas-phase chemistry during the protos...
Context. Thermal annealing of interstellar ices takes place in several stages of star formation. Kno...
Context. The observed presence of pure CO2 ice in protostellar envelopes, revealed by a double peake...
The interaction of carbon monoxide (CO) with vapour-deposited water (H2O) ices has been studied usin...
Laboratory surface science under ultra-high vacuum (UHV) conditions allows us to simulate the growth...
The chem. compn. of planetary bodies, including those in our own Solar System, is related to that of...
WOS:000306597200005International audienceContext. Much of the formaldehyde (H2CO) is formed from the...
The adsorption and desorption of CO on and from amorphous H2O ice at astrophysically relevant temper...
Ices of mixtures of carbon dioxide and methanol have been studied in a range of temperatures relevan...
Water (H2O) ice is an important solid constituent of many astrophysical environments. To comprehend ...
Molecular ices freeze out on the surface of dust grains within the interstellar medium (ISM). Dust g...
Context. Up to 90% of the chemical reactions during star formation occurs on ice surfaces, probably ...
Aims. Solid O2 has been proposed as a possible reservoir for molecular oxygen in dense clouds throug...
The desorption of molecular ices from grain surfaces is important in a number of astrophysical envir...
Context. Ice desorption affects the evolution of the gas-phase chemistry during the protos...
Context. Thermal annealing of interstellar ices takes place in several stages of star formation. Kno...
Context. The observed presence of pure CO2 ice in protostellar envelopes, revealed by a double peake...
The interaction of carbon monoxide (CO) with vapour-deposited water (H2O) ices has been studied usin...
Laboratory surface science under ultra-high vacuum (UHV) conditions allows us to simulate the growth...
The chem. compn. of planetary bodies, including those in our own Solar System, is related to that of...
WOS:000306597200005International audienceContext. Much of the formaldehyde (H2CO) is formed from the...
The adsorption and desorption of CO on and from amorphous H2O ice at astrophysically relevant temper...
Ices of mixtures of carbon dioxide and methanol have been studied in a range of temperatures relevan...
Water (H2O) ice is an important solid constituent of many astrophysical environments. To comprehend ...
Molecular ices freeze out on the surface of dust grains within the interstellar medium (ISM). Dust g...
Context. Up to 90% of the chemical reactions during star formation occurs on ice surfaces, probably ...
Aims. Solid O2 has been proposed as a possible reservoir for molecular oxygen in dense clouds throug...
The desorption of molecular ices from grain surfaces is important in a number of astrophysical envir...