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Quantum statistical and wave packet studies of insertion reactions of S(~1D) with H_2,HD,and D_2

机译:S(〜1D)与H_2,HD和D_2插入反应的量子统计和波包研究

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A thorough theoretical investigation of the reactions between S(~1D)) and various hydrogen isotopomers (H_2,D_2,and HD) has been carried out using a recent ab initio potential energy surface.State-resolved integral and differential cross sections,thermal rate constants,and their dependence on energy or temperature were obtained from quantum mechanical capture probabilities within a statistical model.For comparison,the J=0 reaction probabilities were also computed using an exact wave packet method.The statistical results are in excellent agreement with available exact differential and integral cross sections.The comparison with experimental results shows that the agreement is reasonably good in general,but some significant differences exist,particularly for the SD/SH branching ratio in the S(~1D)+HD reaction.
机译:使用最近的从头算势能面对S(〜1D))与各种氢同位素异构体(H_2,D_2和HD)之间的反应进行了深入的理论研究。状态分解的积分截面和微分截面,热速率常数,以及它们对能量或温度的依赖性,是从统计模型中的量子力学捕获概率中获得的。为了进行比较,还使用精确波包方法计算了J = 0反应概率。统计结果与可用精确度非常吻合与实验结果的比较表明,该协议总体上是合理的,但是存在一些显着差异,特别是在S(〜1D)+ HD反应中SD / SH支化比上。

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