Theoretische Chemie, Fakultät für Chemie, Universität Bielefeld, Bielefeld, Germany.
J Chem Phys. 2009 Dec 14;131(22):224109. doi: 10.1063/1.3272610.
Full-dimensional multiconfigurational time-dependent Hartree calculations on the tunneling splitting of the vibrational ground state and the low lying excited states of malonaldehyde are presented. Methodological developments utilizing the symmetry of double well systems for the efficient calculation of tunneling splittings are described and discussed. Important aspects of the theory underlying the previously communicated results for the ground state tunneling splitting [M. D. Coutinho-Neto et al., J. Chem. Phys. 121, 9207 (2004)] are detailed and further developments facilitating the calculation of tunneling splittings for vibrationally excited states are introduced. Utilizing these developments, the 14 lowest vibrational states of malonaldehyde, i.e., seven tunneling splittings, have been computed. The tunneling splittings are found to vary significantly depending on the particular vibrational excitation. This results in a complex pattern of vibrational levels. Studying the dependence of the tunneling splittings on the vibrational excitation, good agreement with available experimental results is found and intuitive interpretations of the results can be given.
本文对丙二醛的振动基态和低激发态的隧穿劈裂进行了全维多组态含时哈特ree 计算。描述并讨论了利用双势阱系统的对称性进行隧穿劈裂高效计算的方法学发展。详细介绍了先前关于基态隧穿劈裂的通讯结果[M.D.Coutinho-Neto 等人,J.Chem.Phys.121,9207(2004)]的理论基础的重要方面,并引入了便于计算振动激发态隧穿劈裂的进一步发展。利用这些发展,计算了丙二醛的 14 个最低振动态,即 7 个隧穿劈裂。发现隧穿劈裂随特定的振动激发而显著变化。这导致了复杂的振动能级模式。研究隧穿劈裂对振动激发的依赖性,发现与可用的实验结果吻合良好,并且可以给出结果的直观解释。