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Time-Derivative Couplings for Self-Consistent Electronically Nonadiabatic Dynamics

机译:用于自我一致的电子非等级动力学的时间衍生耦合

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摘要

Electronically nonadiabatic dynamics methods based on a self-consistent potential, such as semiclassical Ehrenfest and coherent switching with decay of mixing, have a number of advantages but are computationally slower than approximations based on an unaveraged potential because they require evaluation of all components of the nonadiabatic coupling vector. Here we introduce a new approximation to the self-consistent potential that does not have this computational drawback. The new approximation uses time-derivative couplings evaluated by overlap integrals of electronic wave functions to approximate the nonadiabatic coupling terms in the equations of motion. We present a numerical test of the method for ethylene that shows there is little loss of accuracy in the ensemble-averaged results. This new approximation to the self-consistent potential makes direct dynamics calculations with self-consistent potentials more efficient for complex systems and makes them practically affordable for some cases where the cost was previously too high.
机译:基于自我一致电位的电子非等级动力学方法,例如具有混合衰减的半透明的Ehfest和连贯的切换,具有许多优点,但基于基于不达到的潜力的近似来计算速度慢,因为它们需要评估非等离的所有组分耦合矢量。在这里,我们向不具有这种计算缺点的自我一致潜力引入了新的近似。新的近似使用通过电子波的重叠积分评估的时间衍生耦合,以近似于运动方程中的非等级耦合术语。我们介绍了乙烯方法的数值试验,其显示在集合平均结果中几乎没有准确性损失。这种新的近似对自我一致潜力使得直接动力学计算具有自我一致的潜力对复杂系统的效率更高,并且在成本之前太高的某些情况下实际上是实际价格实际上价格实惠的。

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