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Time-dependent quantum studies of the O(~3P) + HCl(X~1#SIGMA#~+) reaction

机译:O(〜3P)+ HCl(X〜1#SIGMA#〜+)反应的时变量子研究

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摘要

Tume-dependent quantum wave packet calculations are carried out for the O(~3P) + HCl reaction using the Koizumi, Schatz, and Gordon (KSG) and the Ramachardran, Senekowitsch, and Wyatt (RSW) potentials for the total angular momentum J = 0. A detailed study is performed on the KSG surface for which reaction probabilities for the formation of the OH product as a function of collision energies are reported for the #upsilon#_0 = 0,1 and j_0 <= 10 states of HCl. The present results are in good agreement with previous time-independent quantum treatments, and physical insights into the reaction dynamics based on an analysis of the calculated wave packet are explored, for example, mechanisms for the rotationally enhanced reaction probabilities that have been observed at both #upsilon#_0 and 1. The most profound effects are observed when HCl is initially in states with j_0 > 5 or #upsilon#_1. A comparison of the results for #upsilon#_0 = 0, j_0 = 0 with those obtained from the RSW surface indicates that the width of barrier and the topology of the potential play crucial roles in governing the dynamics of the O(~3P) + HCl reaction.
机译:使用小泉,沙特兹和戈登(KSG)以及Ramachardran,Senekowitsch和怀亚特(RSW)势的总角动量J =进行O(〜3P)+ HCl反应的依赖于Tume的量子波包计算。 0.在KSG表面上进行了详细研究,据报道,对于#upsilon#_0 = 0.1和j_0 <= 10状态的HCl,形成OH产物的反应概率是碰撞能的函数。目前的结果与以前的时间独立的量子处理非常吻合,并且基于对计算波包的分析,对反应动力学的物理见解得到了探索,例如,在两种情况下观察到的旋转增强反应概率的机制。 #upsilon#_0和1.当HCl最初处于j_0> 5或#upsilon#_1的状态时,观察到最深远的影响。 #upsilon#_0 = 0,j_0 = 0的结果与从RSW表面获得的结果的比较表明,势垒的宽度和势的拓扑在控制O(〜3P)+的动力学方面起着关键作用。 HCl反应。

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