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对含自旋轨道耦合的溴化镁自由基低激发态进行的从头算MRCI+Q计算。

Ab initio MRCI+Q calculations on the low-lying excited states of the MgBr radical including spin-orbit coupling.

作者信息

Wu Dong-lan, Tan Bin, Wen Yu-feng, Zeng Xue-feng, Xie An-dong, Yan Bing

机构信息

College of Mathematic and Physical, Jinggangshan University, Ji'an 343009, China; Institute of Atomic and Molecular Physics, Jilin University, Changchun 130012, China.

College of Mathematic and Physical, Jinggangshan University, Ji'an 343009, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2016 May 15;161:101-8. doi: 10.1016/j.saa.2016.02.027. Epub 2016 Mar 3.

Abstract

Accurate theoretical calculations on the MgBr radical have been carried out by using the high-level relativistic multireference configuration interaction method with Davidson correction (MRCI+Q) using correlation-consistent Quintuple-ζ quality basis set. The potential energy curves (PECs) of the 14 Λ-S states of MgBr have been computed. In order to improve the PECs, the core-valence correlation, scalar relativistic effect, and spin-orbit coupling effect are taken into account in the computations. The spectroscopic constants of the bound states have been determined from the computed PECs. The results of the ground state X(2)Σ(+) and the first excited state A(2)Π are in good agreement with those from the available experiments, while spectroscopic constants of the other electronic states are firstly reported. The low-lying ion-pair state B(2)Σ(+) correlated to ion-pair dissociation limit Mg(+) ((2)Sg)+Br(-) ((1)Sg) is characterized. The permanent dipole moments (PDMs) of Λ-S states and the R-dependent spin-orbit (SO) matrix elements are computed. The results indicate that the abrupt changes of PDMs and the SO matrix elements are attributed to the changes of the electronic configurations near the avoided crossing point. After taking the SOC effect into account, the 14 Λ-S states split into 30Ω states, and the SOC splitting for the A(2)Π is calculated to be 102.58cm(-1). The SOC effect, leading to the double-well potential of the Ω=(3)1/2 state, is found to be substantial for MgBr. In order to further illustrate the SOC effect and the avoided crossing phenomenon of the PECs, the Λ-S compositions in the Ω state wavefunctions are analyzed in detail. Finally, the transition dipole moments (TDMs) of several transitions from upper Ω states to the ground X(2)Σ(+)1/2 state and the corresponding radiative lifetimes have been studied. It is shown that the (1)3/2-X(2)Σ(+)1/2 and (2)3/2-X(2)Σ(+)1/2 are particularly important to the observed transitions A(2)Π-X(2)Σ(+) and C(2)Π-X(2)Σ(+). The present study should shed more light on the electronic structures and transition properties of electronic states of the MgBr radical.

摘要

采用含戴维森校正的高水平相对论多参考组态相互作用方法(MRCI+Q),使用相关一致的五重ζ质量基组,对MgBr自由基进行了精确的理论计算。计算了MgBr的14个Λ-S态的势能曲线(PEC)。为了改进PEC,在计算中考虑了芯价相关、标量相对论效应和自旋轨道耦合效应。从计算得到的PEC确定了束缚态的光谱常数。基态X(2)Σ(+)和第一激发态A(2)Π的结果与现有实验结果吻合良好,而其他电子态的光谱常数则是首次报道。对与离子对解离极限Mg(+) ((2)Sg)+Br(-) ((1)Sg)相关的低 lying离子对态B(2)Σ(+)进行了表征。计算了Λ-S态的永久偶极矩(PDM)和与R相关的自旋轨道(SO)矩阵元。结果表明,PDM和SO矩阵元的突变归因于近避免交叉点处电子组态的变化。考虑自旋轨道耦合(SOC)效应后,14个Λ-S态分裂为30个Ω态,计算得到A(2)Π的SOC分裂为102.58cm(-1)。发现SOC效应导致Ω=(3)1/2态的双阱势,对MgBr来说是相当大的。为了进一步说明SOC效应和PEC的避免交叉现象,详细分析了Ω态波函数中的Λ-S组成。最后,研究了几个从较高Ω态到基态X(2)Σ(+)1/2态的跃迁偶极矩(TDM)及其相应的辐射寿命。结果表明,(1)3/2-X(2)Σ(+)1/2和(2)3/2-X(2)Σ(+)1/2对观测到的跃迁A(2)Π-X(2)Σ(+)和C(2)Π-X(2)Σ(+)尤为重要。本研究应为MgBr自由基电子态的电子结构和跃迁性质提供更多的信息。

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