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双原子分子中光诱导与本征非绝热现象之间的竞争

Competition between Light-Induced and Intrinsic Nonadiabatic Phenomena in Diatomics.

作者信息

Csehi András, Halász Gábor J, Cederbaum Lorenz S, Vibók Ágnes

机构信息

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

ELI-ALPS, ELI-HU Non-Profit Ltd. , Dugonics tér 13, H-6720 Szeged, Hungary.

出版信息

J Phys Chem Lett. 2017 Apr 6;8(7):1624-1630. doi: 10.1021/acs.jpclett.7b00413. Epub 2017 Mar 24.

Abstract

Nonadiabatic effects arise due to avoided crossings or conical intersections that are either present naturally in field-free space or induced by a classical laser field in a molecule. Recently, it was demonstrated that nonadiabatic effects in diatomics can also be created in an optical cavity. Here, the quantized radiation field mixes the nuclear and electronic degrees of freedom. We show the equivalence of using the cavity's quantized field and the classical laser field as usually done for molecules. This is demonstrated for NaI, which exhibits a pronounced natural (intrinsic) avoided crossing that competes with the avoided crossing induced by the field. Furthermore, rotating molecules exhibit light-induced conical intersections (LICIs) in classical laser light, and we also investigate the impact of these intersections. For NaI, we undoubtedly demonstrate a significant difference between the impact of the laser-induced avoided crossing and that of the LICI on the dynamics of the molecule.

摘要

非绝热效应源于无场空间中自然存在的或者由分子中的经典激光场诱导产生的避免交叉或锥形交叉。最近,有研究表明双原子分子中的非绝热效应也可以在光学腔中产生。在这里,量子化辐射场混合了核自由度和电子自由度。我们展示了使用腔的量子化场与通常用于分子的经典激光场的等效性。这在碘化钠(NaI)中得到了证明,碘化钠表现出明显的自然(固有)避免交叉,它与场诱导的避免交叉相互竞争。此外,旋转分子在经典激光中表现出光诱导锥形交叉(LICIs),我们也研究了这些交叉的影响。对于碘化钠,我们无疑证明了激光诱导的避免交叉和光诱导锥形交叉对分子动力学的影响之间存在显著差异。

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