Jain Amber, Sibert Edwin L
Department of Chemistry and Theoretical Chemistry Institute, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
J Chem Phys. 2015 Feb 28;142(8):084115. doi: 10.1063/1.4908565.
Small symmetric molecules and low-dimensional model Hamiltonians are excellent systems for benchmarking theories to compute tunneling splittings. In this work, we investigate a three dimensional model Hamiltonian coupled to a harmonic bath that describes concerted proton transfer in the formic acid dimer. The three modes include the symmetric proton stretch, the symmetric dimer rock, and the dimer stretch. These modes provide a paradigm for the symmetric and anti-symmetric coupled tunneling pathways, these being recognized in the literature as two of the more important classes of coupling. The effects of selective vibrational excitation and coupling to a bath on the tunneling splittings are presented. The splittings for highly excited states are computed using a novel method that makes an adiabatic approximation to the Herring estimate. Results, which are in excellent agreement with the exact splittings, are compared with those obtained using the Makri-Miller approach. This latter method has been shown to provide quality results for tunneling splittings including highly excited vibrational states.
小对称分子和低维模型哈密顿量是用于对计算隧穿分裂的理论进行基准测试的优秀体系。在这项工作中,我们研究了一个与谐波浴耦合的三维模型哈密顿量,该哈密顿量描述了甲酸二聚体中的协同质子转移。这三种模式包括对称质子拉伸、对称二聚体摇摆和二聚体拉伸。这些模式为对称和反对称耦合隧穿路径提供了一个范例,这些路径在文献中被认为是两类更重要的耦合。本文给出了选择性振动激发和与浴耦合对隧穿分裂的影响。使用一种对赫林估计进行绝热近似的新方法计算了高激发态的分裂。将与精确分裂结果高度吻合的计算结果与使用马克里 - 米勒方法得到的结果进行了比较。后一种方法已被证明对于包括高激发振动态的隧穿分裂能给出高质量的结果。