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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Mixed quantum-classical dynamics in the adiabatic representation to simulate molecules driven by strong laser pulses
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Mixed quantum-classical dynamics in the adiabatic representation to simulate molecules driven by strong laser pulses

机译:绝热表示中的混合量子古典动力学,以模拟强激光脉冲驱动的分子

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摘要

The dynamics of molecules under strong laser pulses is characterized by large Stark effects that modify and reshape the electronic potentials, known as laser-induced potentials (LIPs). If the time scale of the interaction is slow enough that the nuclear positions can adapt to these externally driven changes, the dynamics proceeds by adiabatic following, where the nuclei gain very little kinetic energy during the process. In this regime we show that the molecular dynamics can be simulated quite accurately by a semiclassical surface-hopping scheme formulated in the adiabatic representation. The nuclear motion is then influenced by the gradients of the laser-modified potentials, and nonadiabatic couplings are seen as transitions between the LIPs. As an example, we simulate the process of adiabatic passage by light induced potentials in Na _2 using the surface-hopping technique both in the diabatic representation based on molecular potentials and in the adiabatic representation based on LIPs, showing how the choice of the representation is crucial in reproducing the results obtained by exact quantum dynamical calculations.
机译:强激光脉冲下分子的动力学特征在于大的Stark效应,该效应可以改变和重塑电子势,称为激光感应势(LIP)。如果相互作用的时间尺度足够慢,以至于核位置可以适应这些外部驱动的变化,则动力学将通过绝热跟随进行,在此过程中,核几乎没有动能。在这种情况下,我们证明了分子动力学可以通过绝热表示中拟定的半经典表面跳变方案进行精确模拟。然后,核运动受到激光修饰电势梯度的影响,并且非绝热耦合被视为LIP之间的过渡。例如,我们使用表面跳变技术在基于分子势的非绝热表示和基于LIP的绝热表示中,通过表面跳变技术,模拟了Na _2中光感生势的绝热传递过程,显示了如何选择表示在再现通过精确​​的量子动力学计算获得的结果中至关重要。

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