离子
分子
离解的
解离重组
辐射传输
材料科学
多原子离子
电子
空格(标点符号)
离解(化学)
电子电离
电子转移
原子物理学
化学物理
分子物理学
横截面(物理)
电子俘获
物理
Atom(片上系统)
星际云
作者
Elizabeth Aubin,Jean-Christophe Loison,Mehdi Ayouz,Joshua Forer,Viatcheslav Kokoouline
摘要
Dissociative electron attachment (DEA) to HNC_{3} is modeled theoretically using a first-principles approach. In HNC_{3}+e^{-} collisions, there is a low-energy resonance, which has a repulsive character along the H+NC_{3} coordinate and becomes a bound electronic state of the HNC_{3}^{-} anion near the equilibrium of HNC_{3}. The anion state dissociates without a potential barrier toward C_{3} N^{-}+H. The cross section and the rate coefficient of the process are computed. The obtained rate coefficient at low temperatures is 5×10^{-9} cm^{3}/s at 300 K. Such a value of the DEA rate coefficient makes the DEA process three orders of magnitude more efficient at producing negative molecular ions in interstellar space than radiative electron attachment (REA). It is suggested that negative molecular carbon-chain ions, observed in the interstellar medium, are produced by DEA rather than REA.
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