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Reactant-product decoupling approach to state-to-state dynamics calculation for bimolecular reaction and unimolecular fragmentation

机译:用于双分子反应和单分子裂解的状态间动力学计算的反应物-产物解耦方法

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The main purpose of the study is to explore a number of computational methods to be used in the RPD approach to state-to-state quantum dynamics calculation of polyatomic reactions. Specifically, a mixed time-dependent (TD) and energy-dependent (ED) approach to solve the RPD equations is investigated. In the mixed TD and ED approach, the reactant wavefunction is computed by the method of wavepacket propagation while the product wavefunction is calculated by energy-dependent methods. As a result, the reactant-product coordinate transformation only needs to be carried out for the number of energies at which the state-to-state S-matrix elements are needed, which is advantageous if state-to-state information at only a few energies are needed. Similar implementation of the mixed RPD approach is given for calculation of product state distribution in molecular photofragmentation dynamics. [References: 15]
机译:这项研究的主要目的是探索在RPD方法中用于多原子反应的状态间量子动力学计算的许多计算方法。具体而言,研究了求解时间延迟(RPD)方程的时间相关(TD)和能量相关(ED)混合方法。在TD和ED混合方法中,通过波包传播的方法来计算反应物波函数,而通过能量依赖的方法来计算产物波函数。结果,仅需要针对需要状态-状态S-矩阵元素的能量数量进行反应物-产物坐标变换,如果状态-状态信息仅是很少的,则这是有利的需要能量。给出了混合RPD方法的类似实现,用于计算分子光碎裂动力学中的产物状态分布。 [参考:15]

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