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Extended Born-Oppenheimer equation for a three-state system

机译:三态系统的扩展的Born-Oppenheimer方程

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We present explicit forms of nonadiabatic coupling (NAC) elements of nuclear Schrodinger equation (SE) for a coupled three-state electronic manifold in terms of mixing angles of real electronic basis functions.If the adiabatic-diabatic transformation (ADT) angles are the mixing angles of electronic bases,ADT matrix transforms away the NAC terms and brings diabatic form of SE.ADT and NAC matrices are shown to satisfy a curl condition with nonzero divergence.We have demonstrated that the formulation of extended Born-Oppenheimer (EBO) equation from any three-state BO system is possible only when there exists a coordinate-independent ratio of the gradients for each pair of mixing angles.On the contrary,since such relations among the mixing angles lead to zero curl,we explore its validity analytically around conical intersection(s) and support numerically considering two nuclear-coordinate-dependent three surface BO models.Numerical calculations are performed by using newly derived diabatic and EBO equations and expected transition probabilities are obtained.
机译:对于实际电子基函数的混合角,我们给出了耦合三态电子流形核Schrodinger方程(SE)的非绝热耦合(NAC)元素的显式形式。如果绝热-绝热变换(ADT)角是混合电子基体的角度,ADT矩阵转换了NAC项,并带来SE的非绝热形式。ADT和NAC矩阵满足满足非零散度的卷曲条件。我们证明了扩展的Born-Oppenheimer(EBO)方程的公式任何三态BO系统只有在每对混合角都存在一个与坐标无关的梯度比时才可能。相反,由于混合角之间的这种关系导致零卷曲,因此我们分析了圆锥形周围的有效性。交点和支撑在数值上考虑了两个依赖于核坐标的三个表面BO模型。通过使用新推导的非绝热材料进行数值计算获得了EBO方程和预期的转移概率。

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