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空穴对分子电离光谱的影响。

Impact of Cavity on Molecular Ionization Spectra.

作者信息

Fábri Csaba, Halász Gábor J, Cederbaum Lorenz S, Vibók Ágnes

机构信息

HUN-REN-ELTE Complex Chemical Systems Research Group, H-1518 Budapest 112, Hungary.

Department of Theoretical Physics, University of Debrecen, P.O. Box 400, H-4002 Debrecen, Hungary.

出版信息

J Phys Chem Lett. 2024 May 2;15(17):4655-4661. doi: 10.1021/acs.jpclett.4c00247. Epub 2024 Apr 22.

Abstract

Ionization phenomena have been widely studied for decades. With the advent of cavity technology, the question arises how quantum light affects molecular ionization. As the ionization spectrum is recorded from the neutral ground state, it is usually possible to choose cavities which exert negligible effect on the neutral ground state, but have significant impact on the ion and the ionization spectrum. Particularly interesting are cases where the ion exhibits conical intersections between close-lying electronic states, which gives rise to substantial nonadiabatic effects. Assuming single-molecule strong coupling, we demonstrate that vibrational modes irrelevant in the absence of a cavity play a decisive role when the molecule is in the cavity. Here, dynamical symmetry breaking is responsible for the ion-cavity coupling and high symmetry enables control of the coupling via molecular orientation relative to the cavity field polarization. Significant impact on the spectrum by the cavity is found and shown to even substantially increase for less symmetric molecules.

摘要

几十年来,电离现象一直受到广泛研究。随着腔技术的出现,量子光如何影响分子电离的问题随之而来。由于电离光谱是从中性基态记录的,通常可以选择对中性基态影响可忽略不计,但对离子和电离光谱有显著影响的腔。特别有趣的是离子在紧邻的电子态之间表现出锥形交叉的情况,这会产生大量非绝热效应。假设单分子强耦合,我们证明在没有腔时无关的振动模式在分子处于腔中时起决定性作用。在这里,动态对称性破缺是离子 - 腔耦合的原因,高对称性使得能够通过分子相对于腔场极化的取向来控制耦合。发现腔对光谱有显著影响,并且对于对称性较低的分子,这种影响甚至会大幅增加。

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