An Exhaustive Quantum-Classical Study of C6F6+ Using the Newly Formulated Parallel TDDVR Method

IF 2.7 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry A Pub Date : 2024-07-09 DOI:10.1021/acs.jpca.4c02108
Subhankar Sardar*, 
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Abstract

We recently implemented our parallelized quantum-classical dynamical approach, known as the Time-Dependent Discrete Variable Representation (TDDVR) method, which is applied to the spectroscopically important hexafluorobenzene (HFBz) radical cation, where several conical intersections exist in their seven lowest excited electronic states (S11B2u, S21E1g, S31B1u, S41E1u, and S51A2u) considering degeneracy among potential energy surfaces (PESs), to demonstrate their various dynamical aspects. This new parallel version shows almost linear scalability with increasing number of computing processors. To get photoelectron (PE) spectra, Mass-Analyzed Threshold Ionization (MATI) spectra, population dynamics, and many other dynamical observables, the first-principles dynamics is applied at the state-of-the-art level to the corresponding Hamiltonian, where the Jahn–Teller (JT) and pseudo-Jahn–Teller (PJT) type interactions are involved in those coupled seven electronic states. The quantum-classical method is used to thoroughly analyze the effects of these couplings on the nuclear dynamics of the involved electronic states, and the findings are compared with those observables obtained from experiments. Intrinsic dynamical properties are explained using the reduced densities of the wave packet (WP) in a coupled electronic manifold. The PE and MATI spectra of HFBz computed using TDDVR are found to be in good agreement with earlier experimental data and other theoretically simulated spectra.

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使用新制定的并行 TDDVR 方法对 C6F6+ 进行详尽的量子-经典研究。
我们最近实现了并行化的量子经典动力学方法,即时间离散变量表示法(TDDVR),并将其应用于光谱学上重要的六氟苯(HFBz)自由基阳离子,考虑到势能面(PES)之间的退化性,在其七个最低激发电子态(S11B2u、S21E1g、S31B1u、S41E1u 和 S51A2u)中存在多个锥形交叉点,以展示它们的各种动力学方面。随着计算处理器数量的增加,新的并行版本显示出几乎线性的可扩展性。为了获得光电子(PE)光谱、质谱分析阈值电离(MATI)光谱、种群动力学和许多其他动力学观测值,第一原理动力学被应用到相应的哈密顿方程中,其中贾恩-泰勒(JT)和伪贾恩-泰勒(PJT)类型的相互作用涉及到这些耦合的七个电子态。我们采用量子经典方法深入分析了这些耦合对所涉及电子态核动力学的影响,并将分析结果与实验所获得的观测数据进行了比较。利用耦合电子流形中波包(WP)的还原密度解释了内在动力学特性。使用 TDDVR 计算出的 HFBz 的 PE 和 MATI 光谱与早期的实验数据和其他理论模拟光谱非常吻合。
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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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