1973The Astrophysical JournalRequires access

The Rate of Formation of Interstellar Molecules by Ion-Molecule Reactions

W. D. Watson

Open publisher page 186 citations

Abstract

Ion-molecule reactions involving H2 and Ha + in the interstellar medium are examined when hydrogen is mainly in molecular form. Most small molecules except H2 and CH+ can be formed as a result of these reactions. For the ionization rate due only to the observed high-energy cosmic rays, the rate of molecule formation is comparable with or exceeds upper limits for previously considered processes at particle densities < 10 cm-a. Due to the widespread abundance of H2, reactions with H2 and Ha + can be the chief formation process for small interstellar molecules in a large fraction of the interstellar gas. Subject headings: molecules, interstellar

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Ion-molecule reactions involving H2 and Ha + in the interstellar medium are examined when hydrogen is mainly in molecular form. Most small molecules except H2 and CH+ can be formed as a result of these reactions. For the ionization rate due only to the observed high-energy cosmic rays, the rate of molecule formation is comparable with or exceeds upper limits for previously considered processes at particle densities < 10 cm-a. Due to the widespread abundance of H2, reactions with H2 and Ha + can be the chief formation process for small interstellar molecules in a large fraction of the interstellar gas. Subject headings: molecules, interstellar

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Available abstract

Ion-molecule reactions involving H2 and Ha + in the interstellar medium are examined when hydrogen is mainly in molecular form. Most small molecules except H2 and CH+ can be formed as a result of these reactions. For the ionization rate due only to the observed high-energy cosmic rays, the rate of molecule formation is comparable with or exceeds upper limits for previously considered processes at particle densities < 10 cm-a. Due to the widespread abundance of H2, reactions with H2 and Ha + can be the chief formation process for small interstellar molecules in a large fraction of the interstellar gas. Subject headings: molecules, interstellar

Key concepts: Physics, Interstellar medium, Molecule, Interstellar cloud, Astrochemistry, Ionization, Ion, Cosmochemistry

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