论文标题

在多原子分子的低能振动光谱中,引人注目的光诱导的非绝热指纹

Striking light-induced nonadiabatic fingerprint in the low-energy vibronic spectra of polyatomic molecules

论文作者

Fábri, Csaba, Lasorne, Benjamin, Halász, Gábor J., Cederbaum, Lorenz S., Vibók, Ágnes

论文摘要

非绝热性,即通过核运动混合电子状态的影响,是分子科学中的一种核心现象。由于存在电子能表面的圆锥形相交,最大的非绝热效应。这些相交在多原子分子中很丰富。激光可以以受控的方式诱导新的圆锥形交叉点,称为光诱导的圆锥形交叉点,从而导致强烈的非绝热效应,类似于自然圆锥形交叉点。但是,这些影响是可控的,甚至可能与自然交叉路口竞争。在这项工作中,我们表明,电子基态的标准低能振动光谱可以通过通过光诱导的圆锥形交叉点诱导非绝热性来发生巨大变化。使用具有中等强度的泵激光器和弱探针激光器的泵探针方案,通过全维高级量子计算来证明这种通用效果。

Nonadiabaticity, i.e., the effect of mixing electronic states by nuclear motion, is a central phenomenon in molecular science. The strongest nonadiabatic effects arise due to the presence of conical intersections of electronic energy surfaces. These intersections are abundant in polyatomic molecules. Laser light can induce in a controlled manner new conical intersections, called light-induced conical intersections, which lead to strong nonadiabatic effects similar to those of the natural conical intersections. These effects are, however, controllable and may even compete with those of the natural intersections. In this work we show that the standard low-energy vibrational spectrum of the electronic ground state can change dramatically by inducing nonadiabaticity via a light-induced conical intersection. This generic effect is demonstrated for an explicit example by full-dimensional high-level quantum calculations using a pump-probe scheme with a moderate-intensity pump laser and a weak probe laser.

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