Abstract
An analysis of the kinetics of H2 formation on interstellar dust grains is presented using rate equations. It is shown that semi-empirical expressions that have appeared in the literature represent two different physical regimes. In particular, it is shown that the expression given by Hollenbach, Werner & Salpeter applies when high flux, or high mobility, of H atoms on the surface of a grain makes it very unlikely that H atoms evaporate before they meet each other and recombine. The expression of Pirronello et al. - deduced on the basis of accurate measurements of a realistic dust analogue - applies to the opposite regime (low coverage and low mobility). The implications of this analysis for the understanding of the processes dominating in the interstellar medium are discussed.
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Biham, O., Furman, I., Katz, N., Pirronello, V., & Vidali, G. (1998). H2 formation on interstellar grains in different physical regimes. Monthly Notices of the Royal Astronomical Society, 296(4), 869–872. https://doi.org/10.1046/j.1365-8711.1998.01427.x
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