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具有半充满π壳层的线性三原子分子中的伦纳-泰勒效应和自旋-轨道振动耦合效应

Renner-Teller and spin-orbit vibronic coupling effects in linear triatomic molecules with a half-filled pi shell.

作者信息

Sioutis Ilias, Mishra Sabyashachi, Poluyanov Leonid V, Domcke Wolfgang

机构信息

Department of Chemistry, Technical University of Munich, D-85747 Garching, Germany.

出版信息

J Chem Phys. 2008 Mar 28;128(12):124318. doi: 10.1063/1.2840356.

Abstract

The vibronic and spin-orbit-induced interactions among the (3)Sigma(-), (1)Delta, and (1)Sigma(+) electronic states arising from a half-filled pi orbital of a linear triatomic molecule are considered, employing the microscopic (Breit-Pauli) spin-orbit coupling operator. The 6 x 6 Hamiltonian matrix is derived in a diabatic spin-orbital electronic basis set, including terms up to fourth order in the expansion of the molecular Hamiltonian in the bending normal coordinate about the linear geometry. The symmetry properties of the Hamiltonian are analyzed. Aside from the nonrelativistic fourth-order Renner-Teller vibronic coupling within the (1)Delta state and the second-order nonrelativistic vibronic coupling between the (1)Sigma(+) and (1)Delta states, there exist zeroth-order, first-order, as well as third-order vibronic coupling terms of spin-orbit origin. The latter are absent when the phenomenological expression for the spin-orbit coupling operator is used instead of the microscopic form. The effects of the nonrelativistic and spin-orbit-induced vibronic coupling mechanisms on the (3)Sigma(-), (1)Delta, and (1)Sigma(+) adiabatic potential energy surfaces as well as on the spin-vibronic energy levels are discussed for selected parameter values.

摘要

利用微观(布赖特 - 泡利)自旋 - 轨道耦合算符,考虑了由线性三原子分子的半填充π轨道产生的(3)Σ⁻、(1)Δ和(1)Σ⁺电子态之间的振动 - 电子和自旋 - 轨道诱导相互作用。在绝热自旋 - 轨道电子基组中推导了6×6哈密顿矩阵,包括在围绕线性几何结构的弯曲法向坐标中分子哈密顿量展开式中高达四阶的项。分析了哈密顿量的对称性。除了(1)Δ态内的非相对论四阶伦纳 - 泰勒振动 - 电子耦合以及(1)Σ⁺和(1)Δ态之间的二阶非相对论振动 - 电子耦合外,还存在自旋 - 轨道起源的零阶、一阶以及三阶振动 - 电子耦合项。当使用自旋 - 轨道耦合算符的唯象表达式而非微观形式时,后者不存在。针对选定的参数值,讨论了非相对论和自旋 - 轨道诱导的振动 - 电子耦合机制对(3)Σ⁻、(1)Δ和(1)Σ⁺绝热势能面以及自旋 - 振动能级的影响。

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