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基于非绝热表面的CH自由基阳离子的超越玻恩-奥本海默处理:使用含时离散变量表示法对其中性类似物的光电子能谱进行研究。

A beyond Born-Oppenheimer treatment of CH radical cation for diabatic surfaces: Photoelectron spectra of its neutral analog using time-dependent discrete variable representation.

作者信息

Mukherjee Soumya, Ravi Satyam, Naskar Koushik, Sardar Subhankar, Adhikari Satrajit

机构信息

School of Chemical Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.

Department of Chemistry, Bhatter College, Dantan, Paschim Medinipur 721426, India.

出版信息

J Chem Phys. 2021 Mar 7;154(9):094306. doi: 10.1063/5.0040361.

Abstract

We employ theoretically "exact" and numerically "accurate" Beyond Born-Oppenheimer (BBO) treatment to construct diabatic potential energy surfaces (PESs) of the benzene radical cation (CH ) for the first time and explore the workability of the time-dependent discrete variable representation (TDDVR) method for carrying out dynamical calculations to evaluate the photoelectron (PE) spectra of its neutral analog. Ab initio adiabatic PESs and nonadiabatic coupling terms are computed over a series of pairwise normal modes, which exhibit rich nonadiabatic interactions starting from Jahn-Teller interactions and accidental conical intersections/seams to pseudo Jahn-Teller couplings. Once the electronic structure calculation is completed on the low-lying five doublet electronic states (X̃E, B̃E, and C̃A) of the cationic species, diabatization is carried out employing the adiabatic-to-diabatic transformation (ADT) equations for the five-state sub-Hilbert space to compute highly accurate ADT angles, and thereby, single-valued, smooth, symmetric, and continuous diabatic PESs and couplings are constructed. Subsequently, such surface matrices are used to perform multi-state multi-mode nuclear dynamics for simulating PE spectra of benzene. Our theoretical findings clearly depict that the spectra for X̃E and B̃E-C̃A states obtained from BBO treatment and TDDVR dynamics exhibit reasonably good agreement with the experimental results as well as with the findings of other theoretical approaches.

摘要

我们首次采用理论上“精确”且数值上“准确”的超越玻恩 - 奥本海默(BBO)处理方法来构建苯自由基阳离子(CH )的非绝热势能面(PESs),并探索含时离散变量表示(TDDVR)方法用于进行动力学计算以评估其中性类似物光电子(PE)能谱的可行性。通过一系列成对的简正模式计算了从头算绝热PESs和非绝热耦合项,这些计算展示了丰富的非绝热相互作用,从 Jahn - Teller 相互作用、偶然的锥形交叉/交叉缝到赝 Jahn - Teller 耦合。一旦在阳离子物种的低能五个双重态电子态(X̃E、B̃E和C̃A)上完成电子结构计算,就使用五态子希尔伯特空间的绝热到非绝热变换(ADT)方程进行非绝热化,以计算高精度的ADT角,从而构建单值、平滑、对称且连续的非绝热PESs和耦合。随后,利用这些表面矩阵进行多态多模式核动力学计算以模拟苯的PE能谱。我们的理论结果清楚地表明,从BBO处理和TDDVR动力学获得的X̃E和B̃E - C̃A态的能谱与实验结果以及其他理论方法的结果显示出合理的良好一致性。

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