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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Wave Packet Methods for the Direct Calculation of Energy-Transfer Moments in Molecular Collisions
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Wave Packet Methods for the Direct Calculation of Energy-Transfer Moments in Molecular Collisions

机译:直接计算分子碰撞中能量传递矩的波包方法

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摘要

We present a new wave packet based theory for the direct calculation of energy-transfer moments in molecular collision processes. This theory does not contain any explicit reference to final state information associated with the collision dynamics, thereby avoiding the need for determining vibration-rotation bound states (other than the initial state) for the molecules undergoing collision and also avoiding the calculation of state-to-state transition probabilities. The theory applies to energy-transfer moments of any order, and it generates moments for a wide range of translational energies in a single calculation. Two applications of the theory are made that demonstrate its viability; one is to collinear He+H_2 and the other to collinear He + CS_2 (with two active vibrational modes in CS_2). The results of these applications agree well with earlier results based on explicit calculation of transition probabilities.
机译:我们提出了一种新的基于波包的理论,用于分子碰撞过程中能量传递矩的直接计算。该理论不包含与碰撞动力学相关的最终状态信息的任何明确参考,从而避免了确定碰撞分子的振动-旋转结合状态(除了初始状态)的需要,并且避免了计算状态转移概率。该理论适用于任何阶次的能量传递矩,并且可以在一次计算中生成各种平移能的矩。该理论的两个应用证明了其可行性。一种是共线He + H_2,另一种是共线He + CS_2(在CS_2中具有两个主动振动模式)。这些应用程序的结果与基于显式转换概率的较早结果非常吻合。

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