Experimental results on the formation of molecular hydrogen on amorphous silicate surfaces are presented for the first time and analyzed using a rate equation model. The energy barriers for the relevant diffusion and desorption processes are obtained. They turn out to be significantly higher than those obtained earlier for polycrystalline silicates, demonstrating the importance of grain morphology. Using these barriers we evaluate the efficiency of molecular hydrogen formation on amorphous silicate grains under interstellar conditions. It is found that unlike polycrystalline silicates, amorphous silicate grains are efficient catalysts of H_{2} formation within a temperature range which is relevant to diffuse interstellar clouds. The results...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
Experimental results on the formation of molecular hydrogen on amorphous silicate surfaces are prese...
Experimental results on the formation of molecular hydrogen on amorphous silicate surfaces are prese...
The study of the formation of molecular hydrogen on low temperature surfaces is of interest both bec...
Recent experimental results about the formation of molecular hydrogen on astrophysically relevant su...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We report on laboratory measurements of molecular hydrogen formation and recombination on an olivine...
The results of experiments on the formation of molecular hydrogen on low density and high density am...
Recent experimental results about the formation of molecular hydrogen on astrophysically relevant su...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
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...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
Experimental results on the formation of molecular hydrogen on amorphous silicate surfaces are prese...
Experimental results on the formation of molecular hydrogen on amorphous silicate surfaces are prese...
The study of the formation of molecular hydrogen on low temperature surfaces is of interest both bec...
Recent experimental results about the formation of molecular hydrogen on astrophysically relevant su...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We report on laboratory measurements of molecular hydrogen formation and recombination on an olivine...
The results of experiments on the formation of molecular hydrogen on low density and high density am...
Recent experimental results about the formation of molecular hydrogen on astrophysically relevant su...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
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...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
We have developed a model for molecular hydrogen formation under astrophysically relevant conditions...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...