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Quantum/classical studies of O(P-3)+Ar center dot HCl collision dynamics

机译:O(P-3)+ Ar中心点HCl碰撞动力学的量子/经典研究

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The dynamics of the O(P-3)+HCl and Ar-HCl reactions is investigated using a multiple configuration quantum/classical approach. In this work the dynamics of the hydrogen atom is propagated quantum mechanically in the three Cartesian coordinates of the atom, while the dynamics of the other atoms is propagated classically, in a center-of-mass frame. It is found that the introduction of the argon atom affects the reaction probability through two mechanisms. For nearly collinear O+Ar-HCl collisions, the argon atom blocks the transition state for the O+HCl reaction and inhibits the reaction. On the other hand when the collision geometry is such that the oxygen atom does not collide with the argon atom, the reaction probability is increased. These results are analyzed in terms of the shape of the ground state Ar-HCl wave function. The energy transfer dynamics from the oxygen atom and to the argon atom is also investigated. (C) 2003 American Institute of Physics. [References: 43]
机译:使用多种配置的量子/经典方法研究了O(P-3)+ HCl和Ar-HCl反应的动力学。在这项工作中,氢原子的动力学在原子的三个笛卡尔坐标中以机械方式传播,而其他原子的动力学则在质心框架中经典地传播。发现氩原子的引入通过两种机理影响反应概率。对于几乎共线的O + Ar-HCl碰撞,氩原子会阻止O + HCl反应的过渡态并抑制反应。另一方面,当碰撞几何形状使得氧原子不与氩原子碰撞时,反应概率增加。根据基态Ar-HCl波函数的形状分析了这些结果。还研究了从氧原子到氩原子的能量转移动力学。 (C)2003美国物理研究所。 [参考:43]

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