Mondal T, Varandas A J C
Department of Chemistry, Birla Institute of Technology and Science, Pilani - K. K. Birla Goa Campus, Zuarinagar, Goa 403 726, India.
Departamento de Química, Centro de Química, Universidade de Coimbra, 3004-535 Coimbra, Portugal.
J Chem Phys. 2015 Jul 7;143(1):014304. doi: 10.1063/1.4922906.
An ab initio quantum dynamics study has been performed to explore the structural rearrangement of ground state CH4 (+) in subfemtosecond resolved photodynamics. The method utilizes time-dependent wave-packet propagation on the X˜(2)T2 electronic manifold of the title cation in full dimensionality, including nonadiabatic coupling of the three electronic sheets. Good agreement is obtained with recent experiments [Baker et al., Science 312, 424 (2006)] which use high-order harmonic generation to probe the attosecond proton dynamics. The novel results provide direct theoretical support of the observations while unravelling the underlying details. With the geometrical changes obtained by calculating the expectation values of the nuclear coordinates as a function of time, the structural evolution is predicted to begin through activation of the totally symmetric a1 and doubly degenerate e modes. While the former retains the original Td symmetry of the cation, the Jahn-Teller active e mode conducts it to a D2d structure. At ∼1.85 fs, the intermediate D2d structure is further predicted to rearrange to local C2v minimum geometry via Jahn-Teller active bending vibrations of t2 symmetry.
进行了一项从头算量子动力学研究,以探索基态CH4(+)在亚飞秒分辨光动力学中的结构重排。该方法利用全维下标题阳离子X˜(2)T2电子流形上的含时波包传播,包括三个电子片层的非绝热耦合。与最近使用高次谐波产生来探测阿秒质子动力学的实验[Baker等人,《科学》312, 424 (2006)]取得了良好的一致性。这些新结果在揭示潜在细节的同时,为观测提供了直接的理论支持。通过计算核坐标期望值随时间的几何变化,预测结构演化将通过全对称a1和双重简并e模式的激活开始。虽然前者保留了阳离子原来的Td对称性,但Jahn-Teller活性e模式将其引导至D2d结构。在约1.85飞秒时,进一步预测中间的D2d结构将通过t2对称性的Jahn-Teller活性弯曲振动重排为局部C2v最小几何结构。