International audienceMolecular hydrogen is the most abundant molecular species in the universe. While no doubts exist that it is mainly formed on the interstellar dust grain surfaces, many details of this process remain poorly known. In this work, we focus on the fate of the energy released by the H2 formation on the dust icy mantles: how it is partitioned between the substrate and the newly formed H2, a process that has a profound impact on the interstellar medium. We carried out state-of-the-art ab initio molecular dynamics simulations of H2 formation on periodic crystalline and amorphous ice surface models. Our calculations show that up to two-thirds of the energy liberated in the reaction (~300 kJ mol-1 ~3.1 eV) is absorbed by the ice ...
Molecular hydrogen is the most abundant molecule in the universe. It is the first one to form and su...
International audienceMolecular hydrogen is the most abundant molecule in the universe. It is the fi...
International audienceMolecular hydrogen is the most abundant molecule in the universe. It is the fi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
Dust grains exert a major influence upon the chemical composition of the interstellar medium: photoe...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceThere has always been a great deal of interest in the formation of H2 as well ...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
Molecular hydrogen is the most abundant molecule in the universe. It is the first one to form and su...
International audienceThere has always been a great deal of interest in the formation of H2 as well ...
Molecules in interstellar gas and in interstellar ices play a fundamental role in astronomy. However...
Molecular hydrogen is the most abundant molecule in the universe. It is the first one to form and su...
International audienceMolecular hydrogen is the most abundant molecule in the universe. It is the fi...
International audienceMolecular hydrogen is the most abundant molecule in the universe. It is the fi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
International audienceMolecular hydrogen is the most abundant molecular species in the universe. Whi...
Dust grains exert a major influence upon the chemical composition of the interstellar medium: photoe...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceThere has always been a great deal of interest in the formation of H2 as well ...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
Molecular hydrogen is the most abundant molecule in the universe. It is the first one to form and su...
International audienceThere has always been a great deal of interest in the formation of H2 as well ...
Molecules in interstellar gas and in interstellar ices play a fundamental role in astronomy. However...
Molecular hydrogen is the most abundant molecule in the universe. It is the first one to form and su...
International audienceMolecular hydrogen is the most abundant molecule in the universe. It is the fi...
International audienceMolecular hydrogen is the most abundant molecule in the universe. It is the fi...