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首页> 外文期刊>International Journal of Quantum Chemistry >Rovibrational energies and spectroscopic constants of the H-2(+) system in the electronic states 1s sigma, 7i sigma, 5f pi, 5g pi, 6i pi, and 6i phi
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Rovibrational energies and spectroscopic constants of the H-2(+) system in the electronic states 1s sigma, 7i sigma, 5f pi, 5g pi, 6i pi, and 6i phi

机译:电子状态1s sigma,7i sigma,5f pi,5g pi,6i pi和6i phi的H-2(+)系统的振动能量和光谱常数

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In this work, we present the rovibrational energies and spectroscopic constants of the molecular ion H-2(+) in the electronic states 1s sigma, 7i sigma, 5f pi, 5g pi, 6i pi, and 6i phi. The H-2(+) electronic energies were obtained from the solution of Hamilton-Jacobi equations in association with the series established by Wind-Jaffe. The calculated energies were fitted using the extended Rydberg functions and polynomials in bond order coordinates. From these analytical forms, we evaluated the H-2(+) rovibrational spectroscopic constants for each state using two different procedures. The first was obtained combining the rovibrational energies, determined through the nuclear Schrodinger equation solution, and a diatomic rovibrational energy equation. The second was determined using the Dunham method. The results obtained are in a good agreement with both experimental and theoretical data available in the literature. (C) 2008 Wiley Periodicals, Inc.
机译:在这项工作中,我们介绍了分子离子H-2(+)在电子状态1s sigma,7i sigma,5f pi,5g pi,6i pi和6i phi的旋转振动能和光谱常数。 H-2(+)电子能量是从Hamilton-Jacobi方程的解与Wind-Jaffe建立的级数关联而获得的。在键序坐标中使用扩展的Rydberg函数和多项式拟合计算的能量。从这些分析形式,我们使用两种不同的方法评估了每种状态的H-2(+)振动光谱常数。第一个是结合通过核Schrodinger方程解确定的旋转能量和双原子旋转能量方程而获得的。第二个值是使用Dunham方法确定的。获得的结果与文献中可获得的实验和理论数据都很好地吻合。 (C)2008 Wiley期刊公司

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