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A coherent state approach to semiclassical nonadiabatic dynamics

机译:半经典非绝热动力学的相干态方法

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A semiclassical (SC) approximation to the quantum mechanical propagator for nonadiabatic systems is derived. Our derivation starts with an exact path integral expression that uses canonical coherent states for the nuclear degrees of freedom and spin coherent states for the electronic degrees of freedom. A stationary path approximation (SPA) is then applied to the path integral to obtain the SC approximation. The SPA results in complex classical trajectories of both nuclear and electronic degrees of freedom and a double ended boundary condition. The root search problem is solved using the previously proposed "real trajectory local search" algorithm. The SC approximation is tested on three simple one dimensional two-state systems proposed by Tully [J. Chem. Phys. 93, 1061 (1990)], and the SC results are compared to Ehrenfest and surface hopping predictions. Excellent agreement with quantum results is reached when the SC trajectory is far away from caustics. We discuss the origin of caustics in this SC formalism and the strengths and weaknesses of this approach. (c) 2006 American Institute of Physics.
机译:推导了非绝热系统的量子力学传播器的半经典(SC)近似。我们的推导从精确的路径积分表达式开始,该表达式使用规范相干态表示核自由度,并使用自旋相干态表示电子自由度。然后将固定路径逼近(SPA)应用于路径积分以获得SC逼近。 SPA导致核和电子自由度以及双端边界条件的复杂经典轨迹。使用先前提出的“真实轨迹局部搜索”算法解决了根搜索问题。 SC近似在Tully提出的三个简单的一维二态系统上进行了测试[J.化学物理93,1061(1990)],并将SC结果与Ehrenfest和地面跳变预测进行比较。当SC轨迹远离焦散时,就可以与量子结果达成极好的一致性。我们讨论了这种SC形式主义中苛刻的起源以及这种方法的优缺点。 (c)2006年美国物理研究所。

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