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超越冻结核近似的低对称芳香环分子中动态斯塔克诱导π电子旋转的理论研究

Theoretical Study of Dynamic Stark-Induced π-Electron Rotations in Low-Symmetry Aromatic Ring Molecules beyond the Frozen Nuclear Approximation.

作者信息

Mineo Hirobumi, Phan Ngoc-Loan, La Dung-Kiet, Fujimura Yuichi

机构信息

Atomic Molecular and Optical Physics Research Group, Advanced Institute of Materials Science, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

Faculty of Applied Sciences, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

出版信息

J Phys Chem A. 2021 Feb 25;125(7):1476-1489. doi: 10.1021/acs.jpca.0c10216. Epub 2021 Feb 11.

Abstract

The effects of vibrational motions on dynamic Stark-induced π-electron rotations in a low-symmetry aromatic ring molecule are theoretically studied in the adiabatic approximation. We adopt a simplified three-electronic state model with a few vibronic states. A pair of the lowest vibronic states in two electronic excited states is set degenerate by irradiation of two linearly polarized UV lasers. The resultant degenerate state is named the dynamic Stark-induced degenerate vibronic state (DSIDVS). The laser parameters (intensities and central frequencies) are determined under the conditions of DSIDVS formation. The aromatic ring molecules of interest are supposed to belong to the weak coupling case. The analytical expressions for the DSIDVS and coherent angular momentum () are derived in the displaced harmonic oscillator (DHO) model. Two horizontal potential displacements (, ) between the two electronic excited states (α and β) and the ground state are the parameters in the DHO model. The () calculated with δ = δ is characterized by a regular sequence of the angular momentum pulses with a positive (or negative) constant. For a more general case with ≠ δ, the regular sequence is broken down because of the contribution of the first excited vibronic state in each electronic state to ().

摘要

在绝热近似下,从理论上研究了振动运动对低对称芳香环分子中动态斯塔克诱导的π电子旋转的影响。我们采用了一个具有几个振动态的简化三电子态模型。通过照射两个线偏振紫外激光,使两个电子激发态中的一对最低振动态简并。由此产生的简并态被称为动态斯塔克诱导简并振动态(DSIDVS)。在DSIDVS形成的条件下确定激光参数(强度和中心频率)。所关注的芳香环分子被认为属于弱耦合情况。在位移谐振子(DHO)模型中推导了DSIDVS和相干角动量()的解析表达式。两个电子激发态(α和β)与基态之间的两个水平势位移(,)是DHO模型中的参数。用δ = δ计算的()的特征是具有正(或负)常数的角动量脉冲的规则序列。对于≠δ的更一般情况,由于每个电子态中的第一激发振动态对()的贡献,规则序列被打破。

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