Dust grains exert a major influence upon the chemical composition of the interstellar medium: photoelectrons emitted from the dust grains are the primary energy source for heating interstellar gas, dust grains in dense molecular clouds can accumulate layers of frozen interstellar gases that participate in solid phase chemical reactions, and the most abundant molecule in the Universe, molecular hydrogen, primarily forms from hydrogen atoms adsorbed onto grain surfaces. Molecular hydrogen influences the evolution of molecular clouds by acting as a coolant during the gravitational collapse of the cloud and serving as a precursor for the formation of many molecular species. A complete description of molecular hydrogen formation in molecular clo...
Context. The presence of dust can strongly affect the chemical composition of the interstellar mediu...
Context. Methanol and its precursor formaldehyde are among the most studied organic molecules in the...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Our laboratory research program is about the formation of molecules on dust grains analogues in cond...
Molecular hydrogen is by far the most abundant molecule in space. H$\sb2$ formation in the interstel...
Molecular hydrogen has an important role in the early stages of star formation as well as in the pro...
The region of space between stars, the interstellar medium, has been found to contain over 160 chemi...
Molecules in interstellar gas and in interstellar ices play a fundamental role in astronomy. However...
Context. Interstellar ice is the main form of metal species in dark molecular clouds. Experiments an...
The interstellar medium (ISM) is the place surrounding the stars. It is constituted of gas and dust ...
The interstellar medium (ISM) is the place surrounding the stars. It is constituted of gas and dust ...
The interstellar medium (ISM) is the place surrounding the stars. It is constituted of gas and dust ...
Molecules in interstellar gas and in interstellar ices play a fundamental role in astronomy. However...
Context. The presence of dust can strongly affect the chemical composition of the interstellar mediu...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Context. The presence of dust can strongly affect the chemical composition of the interstellar mediu...
Context. Methanol and its precursor formaldehyde are among the most studied organic molecules in the...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Our laboratory research program is about the formation of molecules on dust grains analogues in cond...
Molecular hydrogen is by far the most abundant molecule in space. H$\sb2$ formation in the interstel...
Molecular hydrogen has an important role in the early stages of star formation as well as in the pro...
The region of space between stars, the interstellar medium, has been found to contain over 160 chemi...
Molecules in interstellar gas and in interstellar ices play a fundamental role in astronomy. However...
Context. Interstellar ice is the main form of metal species in dark molecular clouds. Experiments an...
The interstellar medium (ISM) is the place surrounding the stars. It is constituted of gas and dust ...
The interstellar medium (ISM) is the place surrounding the stars. It is constituted of gas and dust ...
The interstellar medium (ISM) is the place surrounding the stars. It is constituted of gas and dust ...
Molecules in interstellar gas and in interstellar ices play a fundamental role in astronomy. However...
Context. The presence of dust can strongly affect the chemical composition of the interstellar mediu...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Context. The presence of dust can strongly affect the chemical composition of the interstellar mediu...
Context. Methanol and its precursor formaldehyde are among the most studied organic molecules in the...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...