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A MULTIBAND SEMICLASSICAL MODEL FOR SURFACE HOPPING QUANTUM DYNAMICS

机译:跃迁量子动力学的多带半经典模型

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摘要

In the paper we derive a semiclassical model for surface hopping allowing quantum dynamical nonadiabatic transition between different potential energy surfaces in which cases the classical Born-Oppenheimer approximation breaks down. The model is derived using the Wigner transform and Weyl quantization, and the central idea is to evolve the entire Wigner matrix rather than just the diagonal entries as was done previously in the adiabatic case. The off-diagonal entries of the Wigner matrix suitably describe the nonadiabatic transition, such as the Berry connection, for avoided crossings. We study the numerical approximation issues of the model, and then conduct numerical experiments to validate the model.
机译:在本文中,我们导出了一个表面跳跃的半经典模型,该模型允许在不同势能表面之间进行量子动力学非绝热跃迁,在这种情况下,经典的Born-Oppenheimer近似会破裂。该模型是使用Wigner变换和Weyl量化得出的,其中心思想是演化整个Wigner矩阵,而不是像绝热案例中那样仅对角线项进行演化。 Wigner矩阵的非对角线条目适当地描述了非绝热过渡,例如Berry连接,以避免交叉。我们研究模型的数值逼近问题,然后进行数值实验以验证模型。

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