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首页> 外文期刊>The Journal of Chemical Physics >Calculation of state-to-state differential and integral cross sections for atom-diatom reactions with transition-state wave packets
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Calculation of state-to-state differential and integral cross sections for atom-diatom reactions with transition-state wave packets

机译:具有过渡态波包的原子-硅藻反应的状态间微分和积分截面的计算

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摘要

A recently proposed transition-state wave packet method [R. Welsch, F. Huarte-Larra?aga, and U. Manthe, J. Chem. Phys. 136, 064117 (2012)] provides an efficient and intuitive framework to study reactive quantum scattering at the state-to-state level. It propagates a few transition-state wave packets, defined by the eigenfunctions of the low-rank thermal flux operator located near the transition state, into the asymptotic regions of the reactant and product arrangement channels separately using the corresponding Jacobi coordinates. The entire S-matrix can then be assembled from the corresponding flux-flux cross-correlation functions for all arrangement channels. Since the transition-state wave packets can be defined in a relatively small region, its transformation into either the reactant or product Jacobi coordinates is accurate and efficient. Furthermore, the grid/basis for the propagation, including the maximum helicity quantum number K, is much smaller than that required in conventional wave packet treatments of state-to-state reactive scattering. This approach is implemented for atom-diatom reactions using a time-dependent wave packet method and applied to the H + D_2 reaction with all partial waves. Excellent agreement with benchmark integral and differential cross sections is achieved.
机译:最近提出的过渡态波包方法[R. Welsch,F.Huarte-Larra?aga和U.Manthe,J.Chem。物理136,064117(2012)]提供了一种高效且直观的框架,用于研究状态间的反应性量子散射。它通过位于过渡态附近的低阶热通量算子的本征函数定义的一些过渡态波包,使用相应的Jacobi坐标分别传播到反应物和产物排列通道的渐近区域中。然后,可以从所有布置通道的相应磁通互相关函数中组装整个S矩阵。由于可以在相对较小的区域中定义过渡态波包,因此将其转换为反应物或产物雅可比坐标是准确而高效的。此外,包括最大螺旋度量子数K在内的用于传播的栅格/基极比状态对状态反应性散射的常规波包处理中所需的栅格/基极小。该方法适用于使用时间依赖波包方法的原子-硅藻反应,并应用于所有分波的H + D_2反应。与基准积分和微分横截面实现了出色的一致性。

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