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CS^(+)势能曲线和光谱常数的理论研究
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作者 李瑞 桑纪群 +4 位作者 艾瑞波 宋铭彤 阴爽 任晓辉 苗凤娟 《高师理科学刊》 2022年第3期46-51,共6页
由于硫化碳分子(CS)及其离子(CS^(+))特殊的物理性质,成为天文学和光谱学研究工作的热点.CS^(+)具有不稳定性和瞬时性,因此目前对CS^(+)的光谱性质和结构的研究较少.使用考虑标量相对论效应和自旋-轨道耦合效应在内的多参考组态相互作... 由于硫化碳分子(CS)及其离子(CS^(+))特殊的物理性质,成为天文学和光谱学研究工作的热点.CS^(+)具有不稳定性和瞬时性,因此目前对CS^(+)的光谱性质和结构的研究较少.使用考虑标量相对论效应和自旋-轨道耦合效应在内的多参考组态相互作用的方法(MRCI)对CS^(+)电子态的势能曲线(PECs)、电偶极矩(PDMs)和跃迁偶极矩(TDMs)进行研究.并拟合得到^(1)2Π-X^(2)∑^(+),2^(2)∑^(+)-X^(2)∑^(+)以及2^(2)∑^(+)-1^(2)Π跃迁的辐射寿命. 展开更多
关键词 势能曲线 光谱常数 硫化碳分子离子 辐射寿命
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Ab initio MRCI+Q study on potential energy curves and spectroscopic parameters of low-lying electronic states of CS^+ 被引量:2
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作者 李瑞 魏长立 +4 位作者 孙启响 孙二平 金明星 徐海峰 闫冰 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第12期208-215,共8页
Carbon monosulfide molecular ion (CS+), which plays an important role in various research fields, has long been attracting much interest. Because of the unstable and transient nature of CS+, its electronic states ... Carbon monosulfide molecular ion (CS+), which plays an important role in various research fields, has long been attracting much interest. Because of the unstable and transient nature of CS+, its electronic states have not been well investigated. In this paper, the electronic states of CS+ are studied by employing the internally contracted multireference configuration interaction method, and taking into account relativistic effects (scalar plus spin–orbit coupling). The spin–orbit coupling effects are considered via the state-interacting method with the full Breit–Pauli Hamiltonian. The potential energy curves of 18 Λ–S states correlated with the two lowest dissociation limits of CS+ molecular ion are calculated, and those of 10 lowest Ω states generated from the 6 lowest Λ–S states are also worked out. The spectroscopic constants of the bound states are evaluated, and they are in good agreement with available experimental results and theoretical values. With the aid of analysis of Λ–S composition of Ω states at different bond lengths, the avoided crossing phenomena in the electronic states of CS+ are illuminated. Finally, the single ionization spectra of CS (X1Σ+) populating the CS+(X2Σ1/2+, A2Π3/2, A2Π1/2, and B2Σ1/2+) states are simulated. The vertical ionization potentials for X2Σ1/2+, A2Π3/2, A2Π1/2, and B2Σ1/2+ states are calculated to be 11.257, 12.787, 12.827, and 15.860 eV, respectively, which are accurate compared with previous experimental results, within an error margin of 0.08 eV^0.2 eV. 展开更多
关键词 potential energy curves spin–orbit coupling carbon monosulfide molecular ion (CS+) ionization spectrum
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