Harter William G, Mitchell Justin C
Department of Physics, University of Arkansas, Fayetteville, AR 72701, USA.
Int J Mol Sci. 2013 Jan 4;14(1):714-806. doi: 10.3390/ijms14010714.
Spectra of high-symmetry molecules contain fine and superfine level cluster structure related to J-tunneling between hills and valleys on rovibronic energy surfaces (RES). Such graphic visualizations help disentangle multi-level dynamics, selection rules, and state mixing effects including widespread violation of nuclear spin symmetry species. A review of RES analysis compares it to that of potential energy surfaces (PES) used in Born-Oppenheimer approximations. Both take advantage of adiabatic coupling in order to visualize Hamiltonian eigensolutions. RES of symmetric and D(2) asymmetric top rank-2-tensor Hamiltonians are compared with O(h) spherical top rank-4-tensor fine-structure clusters of 6-fold and 8-fold tunneling multiplets. Then extreme 12-fold and 24-fold multiplets are analyzed by RES plots of higher rank tensor Hamiltonians. Such extreme clustering is rare in fundamental bands but prevalent in hot bands, and analysis of its superfine structure requires more efficient labeling and a more powerful group theory. This is introduced using elementary examples involving two groups of order-6 (C(6) and D(3)~C(3v)), then applied to families of O(h) clusters in SF(6) spectra and to extreme clusters.
高对称分子的光谱包含与振转电子能面(RES)上山谷和山峰之间的J隧穿相关的精细和超精细能级簇结构。这种图形可视化有助于理清多级动力学、选择规则以及包括广泛违反核自旋对称种类在内的态混合效应。一篇关于RES分析的综述将其与玻恩-奥本海默近似中使用的势能面(PES)分析进行了比较。两者都利用绝热耦合来可视化哈密顿本征解。将对称和D(2)非对称陀螺二级张量哈密顿量的RES与具有6重和8重隧穿多重态的O(h)球形陀螺四级张量精细结构簇进行了比较。然后通过高阶张量哈密顿量的RES图对极端的12重和24重多重态进行分析。这种极端簇在基带中很少见,但在热带中很普遍,对其超精细结构的分析需要更有效的标记和更强大的群论。这通过涉及两组6阶群(C(6)和D(3)~C(3v))的基本例子来介绍,然后应用于SF(6)光谱中的O(h)簇族和极端簇。