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首页> 外文期刊>The Journal of Chemical Physics >Rotational state-changing collisions of C2H- and C2N- anions with He under interstellar and cold ion trap conditions: A computational comparison
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Rotational state-changing collisions of C2H- and C2N- anions with He under interstellar and cold ion trap conditions: A computational comparison

机译:在星际和冷离子陷阱条件下,旋转状态改变C2H-和C2NIONS的碰撞:计算比较

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摘要

We present an extensive range of quantum calculations for the state-changing rotational dynamics involving two simple molecular anions that are expected to play some role in the evolutionary analysis of chemical networks in the interstellar environments, C2H- (X-1 Sigma (+)) and C2N- (X-3 Sigma (-)), but for which inelastic rates are only known for C2H-. The same systems are also of direct interest in modeling selective photo-detachment experiments in cold ion traps where the He atoms function as the chief buffer gas at the low trap temperatures. This study employs accurate, ab initio calculations of the interaction potential energy surfaces for these anions, treated as rigid rotors, and the He atom to obtain a wide range of state-changing quantum cross sections and rates at temperatures up to about 100 K. The results are analyzed and compared for the two systems to show differences and similarities between their rates of state-changing dynamics.
机译:我们为涉及两种简单的分子阴离子的状态改变旋转动态提供了广泛的量子计算,这些分子阴离子预计在术中的化学网络中的进化分析中发挥了一些作用,C2H-(X-1 Sigma(+)) 和C2N-(x-3 sigma( - )),但仅针对C2H-仅为哪种无弹性率而闻名。 相同的系统也是直接兴趣在冷离子阱中建模的选择性照片 - 脱离实验,其中HE原子用作低阱温度的主要缓冲气体。 本研究采用准确的AB ININIO计算这些阴离子的相互作用电位能量,作为刚性转子,以及他原子以在高达约100k的温度下获得各种状态改变的量子横截面和速率。该 分析结果并比较了两个系统,以显示其状态改变动态率之间的差异和相似性。

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