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The Rate of the Reaction between CN and C_2H_2 at Interstellar Temperatures

机译:星际温度下CN与C_2H_2之间的反应速率

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The rate coefficient for the important interstellar reaction between CN and C2H2 has been calculated as a function of temperature between 10 and 300 K. The potential surface for this reaction has been determined through ab initio quantum chemical techniques; the potential exhibits no barrier in the entrance channel but does show a small exit channel barrier, which lies below the energy of reactants. Phase-space calculations for the reaction dynamics, which take the exit channel barrier into account, show the same unusual temperature dependence as determined by experiment, in which the rate coefficient at first increases as the temperature is reduced below room temperature and then starts to decrease as the temperature drops below 50100 K. The agreement between theory and experiment provides strong confirmation that the reaction occurs appreciably at cool interstellar temperatures.
机译:已经计算了CN和C2H2之间重要的星际反应的速率系数,该系数是温度在10到300 K之间的函数。该势能在入口通道中没有显示任何势垒,但确实显示出较小的出口通道势垒,其低于反应物的能量。考虑到出口通道壁垒的反应动力学的相空间计算显示出与实验确定的相同的异常温度依赖性,其中速率系数首先随着温度降低到室温以下而增加,然后开始降低当温度降至50100 K以下时。理论与实验之间的一致性充分证实了该反应在星际温度较低时会明显发生。

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