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Mixed semiclassical-classical propagators for the Wigner phase space representation

机译:Wigner相空间表示的混合半经典-经典传播子

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We formulate mixed semiclassical-classical (SC-Cl) propagators by adding a further approximation to the phase-space SC propagators, which have been formulated in our previous paper [S. Koda, J. Chem. Phys. 143, 244110 (2015)]. We first show that the stationary phase approximation over the operation of the phase-space van Vleck propagator on initial distribution functions results in the classical mechanical time propagation. Then, after dividing the degrees of freedom (DOFs) of the total system into the semiclassical DOFs and the classical DOFs, the SC-Cl van Vleck propagator and the SC-Cl Herman-Kluk (HK) propagator are derived by performing the stationary phase approximation only with respect to the classical DOFs. These SC-Cl propagators are naturally decomposed to products of the phase-space SC propagators and the classical mechanical propagators when the system does not have any interaction between the semiclassical and the classical DOFs. In addition, we also numerically compare the original phase-space HK (full HK) propagator and the SC-Cl HK propagator in terms of accuracy and efficiency to find that the accuracy of the SC-Cl HK propagator can be comparable to that of the full HK propagator although the latter is more accurate than the former in general. On the other hand, we confirm that the convergence speed of the SC-Cl HK propagator is faster than that of the full HK propagator. The present numerical tests indicate that the SC-Cl HK propagator can be more accurate than the full HK propagator when they use a same and finite number of classical trajectories due to the balance of the accuracy and the efficiency. Published by AIP Publishing.
机译:我们通过在相空间SC传播子中增加一个进一步的近似来配制混合的半经典-经典(SC-Cl)传播子,它们在我们以前的论文中已经提出[S.C. Koda,J. Chem。物理143,244110(2015)]。我们首先表明,在初始分布函数上,相空间范弗莱克传播器的操作上的固定相位近似会导致经典的机械时间传播。然后,在将整个系统的自由度(DOF)分为半经典自由度和经典自由度之后,通过执行固定阶段,得出SC-Cl van Vleck传播子和SC-Cl Herman-Kluk(HK)传播子。仅针对经典自由度进行近似。当系统在半经典自由度和经典自由度之间没有任何相互作用时,这些SC-Cl繁殖体自然会分解为相空间SC繁殖体和经典机械繁殖体的乘积。此外,我们还从精度和效率上对原始相空间HK(全HK)繁殖器和SC-Cl HK繁殖器进行了数值比较,发现SC-Cl HK繁殖器的精度可以与SC-Cl HK繁殖器的精度相媲美。完整的香港传播者,尽管后者比一般的传播者更为准确。另一方面,我们确认SC-Cl HK繁殖体的收敛速度比完整HK繁殖体的收敛速度快。目前的数值测试表明,由于精确度和效率的平衡,当SC-Cl HK传播器使用相同数量的经典轨迹时,它们可以比完整HK传播器更精确。由AIP Publishing发布。

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