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Multistate vibronic interactions in the benzene radical cation. II. Quantum dynamical simulations

机译:苯自由基阳离子中的多态振动相互作用。二。量子动力学模拟

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The multistate vibronic dynamics in the X~2E_1g-E~2B_2u electronic states of the benzene radical cation is investigated theoretically by an ab initio quantum-dynamical approach. The vibronic coupling scheme and the ab initio values of the system parameters are adopted from the previous Paper I. Vibronic line spectra are obtained with the Lanczos procedure. Extensive calculations on wave-packet propagation have been performed with the aid of the multiconfiguration time-dependent Hartree method. Up to five coupled electronic potential energy surfaces and 13 vibrational degrees of freedom have been included in these calculations. As result, the impact of a third electronic state (X or B) on a strongly coupled manifold (B-C or D-E states) is quantitatively aassessed. It leads to a restructuring of the spectral envelope which is stronger for the B-D-E than for the X-B-C system. The internal conversion dynamics is characterized by a stepwise transfer of electronic population to the lowest electronic state on a time scale of approx 100 fs, if the system is prepared initially on the system is prepared in the intermediate state at t=0; they show a branching of the electronic populations. These are all novel findings which are discussed in terms of a series of conical intersections between the various potential energy surfaces. The importance of such multistate vibronic interactions for the photophysics and photochemistry of medium-sized systems is pointed out.
机译:从头开始量子动力学方法从理论上研究了苯自由基阳离子在X〜2E_1g-E〜2B_2u电子态下的多态振动动力学。从先前的论文I中采用了振动耦合方案和系统参数的从头算值。通过Lanczos程序获得了振动线谱。借助于多配置时间相关的Hartree方法,已经进行了有关波包传播的大量计算。这些计算中最多包含五个耦合的电子势能面和13个振动自由度。结果,定量地评估了第三电子态(X或B)对强耦合歧管(B-C或D-E态)的影响。它导致频谱包络的​​重组,对于B-D-E而言,它比X-B-C系统更强。内部转换动力学的特征是,如果系统最初是在t = 0时以中间状态准备的,则在大约100 fs的时间尺度上将电子种群逐步转移到最低电子状态。它们显示了电子种群的分支。这些都是新颖的发现,将根据各种势能面之间的一系列圆锥形相交进行讨论。指出了这种多态振动相互作用对于中型系统的光物理和光化学的重要性。

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