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量子过渡态理论框架内的态-态反应概率。

State-to-state reaction probabilities within the quantum transition state framework.

机构信息

Theoretische Chemie, Fakultät für Chemie, Universität Bielefeld, Universitätsstr. 25, D-33615 Bielefeld, Germany.

出版信息

J Chem Phys. 2012 Feb 14;136(6):064117. doi: 10.1063/1.3684631.

Abstract

Rigorous quantum dynamics calculations of reaction rates and initial state-selected reaction probabilities of polyatomic reactions can be efficiently performed within the quantum transition state concept employing flux correlation functions and wave packet propagation utilizing the multi-configurational time-dependent Hartree approach. Here, analytical formulas and a numerical scheme extending this approach to the calculation of state-to-state reaction probabilities are presented. The formulas derived facilitate the use of three different dividing surfaces: two dividing surfaces located in the product and reactant asymptotic region facilitate full state resolution while a third dividing surface placed in the transition state region can be used to define an additional flux operator. The eigenstates of the corresponding thermal flux operator then correspond to vibrational states of the activated complex. Transforming these states to reactant and product coordinates and propagating them into the respective asymptotic region, the full scattering matrix can be obtained. To illustrate the new approach, test calculations study the D + H(2)(ν, j) → HD(ν', j') + H reaction for J = 0.

摘要

可以在量子过渡态概念的范围内,利用通量相关函数和波包传播,利用多组态含时哈特里方法,高效地进行反应速率的严格量子动力学计算和多原子反应的初始态选择反应几率。这里,给出了扩展该方法到态-态反应几率计算的解析公式和数值方案。推导出的公式便于使用三种不同的分割面:两个位于产物和反应物渐近区域的分割面有助于完全态分辨率,而位于过渡态区域的第三个分割面可用于定义附加通量算子。相应的热通量算子的本征态对应于活化复合物的振动态。将这些态转化为反应物和产物坐标,并将它们传播到相应的渐近区域,可以得到完整的散射矩阵。为了说明新方法,测试计算研究了 D + H(2)(ν, j) → HD(ν', j') + H 反应,J = 0。

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