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Electronic and nuclear flux dynamics at a conical intersection

机译:锥形交叉点的电子和核通量动态

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A combined electronic-nuclear wave packet motion is accompanied by temporal changes of probability flux densities. Using a two dimensional model, we study such densities in the vicinity of a conical intersection (CI) between the potential energy surfaces of two electronically excited states. When the dynamics is accompanied by an efficient population transfer, the electronic flux density behaves nearly time-independent although the nuclear flux does not. The second case involves a nuclear motion where the CI is surrounded. There, the nuclear wave packet undergoes a bifurcation, and the electronic density shows characteristics of a rotation. The electronic flux, however, exhibits a constant directional dynamics during the nuclear motion. The geometrical phase which appears in comparing the nuclear dynamics derived from the coupled motion and the Born-Oppenheimer calculation is also seen in the nuclear flux dynamics. Published under license by AIP Publishing.
机译:组合的电子核波分组运动伴随着概率通量密度的时间变化。 使用二维模型,我们研究了两个电子激发态的潜在能量表面之间的锥形交叉点(CI)附近的这种密度。 当动态伴随有效的人口转移时,虽然核通量没有,但是电子助焊密度表现得几乎与时间无关。 第二个案例涉及CI所包围的核动作。 在那里,核波包经历分叉,电子密度表示旋转的特性。 然而,电子通量在核动作期间表现出恒定的方向动态。 在核通量动态中也观察到比较耦合运动的核动力学和出生的oppenHeimer计算中出现的几何相位。 通过AIP发布在许可证下发布。

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