Context. Although H2O is the most important molecular material found in the solid state in the interstellar medium, the chemical routes leading to ice through surface reactions are still a matter of discussion. Three reaction pathways proposed in the past are at the heart of current research: hydrogenation of atomic oxygen, molecular oxygen, and ozone. The reaction network finally leads to a small number of processes giving H2O: H + OH, H2 + OH, and H + H2O2. To these processes, OH + OH should be added. It is known to be efficient in atmospheric chemistry and takes the irradiations of the interstellar grains into account that, directly or indirectly, create a number of OH radicals on and in the icy mantles. Aims. We study the role of the ex...
Laboratory experiments have demonstrated that magnetospheric radiation in the Jovian system drives r...
International audienceThe formation of interstellar complex organic molecules is currently thought t...
The formation of interstellar water is commonly accepted to occur on the surfaces of icy dust grains...
Producción CientíficaContext. Although H2O is the most important molecular material found in the sol...
Context. In spite of the permanent damage suffered from the radiation field (cosmic rays, X-rays, an...
Water is an important oxygen reservoir in space and is often used as a tracer of large-scale gas-pha...
A common misconception is that outer space is too harsh of an environment to support the production ...
Recent surface chemistry experiments have shown that the hydrogenation of molecular oxygen on inters...
Context. Carbon dioxide (CO2) is one of the dominant components of interstellar ices. Recent observa...
International audienceContext. Successive hydrogenation reactions of CO on interstellar icy grain su...
Context. Successive hydrogenation reactions of CO on interstellar icy grain surfaces are considered ...
International audienceWater is observed in many astrophysical environments in both gas and solid pha...
The formation of interstellar water is commonly accepted to occur on the surfaces of icy dust grains...
Laboratory experiments have demonstrated that magnetospheric radiation in the Jovian system drives r...
International audienceThe formation of interstellar complex organic molecules is currently thought t...
The formation of interstellar water is commonly accepted to occur on the surfaces of icy dust grains...
Producción CientíficaContext. Although H2O is the most important molecular material found in the sol...
Context. In spite of the permanent damage suffered from the radiation field (cosmic rays, X-rays, an...
Water is an important oxygen reservoir in space and is often used as a tracer of large-scale gas-pha...
A common misconception is that outer space is too harsh of an environment to support the production ...
Recent surface chemistry experiments have shown that the hydrogenation of molecular oxygen on inters...
Context. Carbon dioxide (CO2) is one of the dominant components of interstellar ices. Recent observa...
International audienceContext. Successive hydrogenation reactions of CO on interstellar icy grain su...
Context. Successive hydrogenation reactions of CO on interstellar icy grain surfaces are considered ...
International audienceWater is observed in many astrophysical environments in both gas and solid pha...
The formation of interstellar water is commonly accepted to occur on the surfaces of icy dust grains...
Laboratory experiments have demonstrated that magnetospheric radiation in the Jovian system drives r...
International audienceThe formation of interstellar complex organic molecules is currently thought t...
The formation of interstellar water is commonly accepted to occur on the surfaces of icy dust grains...