Observatoire de Paris , LUTh and UMR 8102 due CNRS, Place J. Janssen, 92190 Meudon, France.
J Phys Chem A. 2013 Oct 3;117(39):9959-67. doi: 10.1021/jp400119a. Epub 2013 May 22.
CH2D+, the singly deuterated counterpart of CH3(+), offers an alternative way to mediate formation of deuterated species at temperatures of several tens of Kelvin, as compared to the release of deuterated species from grains. We report a longstanding observational search for this molecular ion, whose rotational spectroscopy is not yet completely secure. We summarize the main spectroscopic properties of this molecule and discuss the chemical network leading to the formation of CH2D+, with explicit account of the ortho/para forms of H2, H3(+), and CH3(+). Astrochemical models support the presence of this molecular ion in moderately warm environments at a marginal level.
CH2D+ 是 CH3(+) 的氘代单同位素体,与从颗粒中释放氘代物质相比,它为在几十开尔文的温度下生成氘代物质提供了另一种途径。我们报告了对这种分子离子的长期观测搜索,其旋转光谱尚未完全确定。我们总结了该分子的主要光谱性质,并讨论了导致 CH2D+形成的化学网络,其中明确考虑了 H2、H3(+)和 CH3(+)的正/仲形式。天体化学模型支持在中等温暖的环境中存在这种分子离子,但其丰度处于边缘水平。