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首页> 外文期刊>The Journal of Chemical Physics >A reactant-coordinate-based wave packet method for full-dimensional state-to-state quantum dynamics of tetra-atomic reactions: Application to both the abstraction and exchange channels in the H + H2O reaction
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A reactant-coordinate-based wave packet method for full-dimensional state-to-state quantum dynamics of tetra-atomic reactions: Application to both the abstraction and exchange channels in the H + H2O reaction

机译:基于反应物坐标的波包方法,用于四原子反应的全维状态间量子动力学:在H + H2O反应中的抽象通道和交换通道中的应用

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摘要

An efficient and accurate wave packet method is proposed for the calculation of the state-to-state S-matrix elements in bimolecular reactions involving four atoms. This approach propagates an initial state specific wave packet in reactant Jacobi coordinates. The projection in product channels is carried out on projection planes, which have one less degree of freedom, by transforming both the time-dependent wave packet and final product states into a set of intermediate coordinates. This reactant-coordinate-based method is more efficient than product-coordinate-based methods because it typically requires a smaller number of basis functions or grid points and allows the determination of S-matrix elements for multiple product channels from a single propagation. This method is demonstrated in calculating the (J(tot) = 0) state-to-state S-matrix elements for both the abstraction and exchange channels of the H + H2O reaction. (C) 2016 AIP Publishing LLC.
机译:提出了一种高效准确的波包方法,用于计算涉及四个原子的双分子反应中的状态态S矩阵元素。该方法在反应物雅可比坐标中传播特定于初始状态的波包。通过将与时间有关的波包和最终产品状态都转换为一组中间坐标,可以在具有较少自由度的投影平面上进行产品通道中的投影。这种基于反应物坐标的方法比基于产物坐标的方法更有效,因为它通常需要较少数量的基函数或网格点,并允许从一次传播确定多个产物通道的S矩阵元素。在计算H + H2O反应的抽象通道和交换通道的(J(tot)= 0)状态对状态S矩阵元素时证明了该方法。 (C)2016 AIP出版有限责任公司。

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