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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Ab initio Potential Energy Curve for the Ground State of Beryllium Dimer
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Ab initio Potential Energy Curve for the Ground State of Beryllium Dimer

机译:AB Initio铍二聚体的地面势能曲线

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摘要

This work concerns ab initio calculations of the complete potential energy curve and spectroscopic constants for the ground state X-1 Sigma(+)(g) of the beryllium dimer, Be-2. High accuracy and reliability of the results is one of the primary goals of the paper. To this end, we apply large basis sets of Slater-type orbitals combined with high-level electronic structure methods including triple and quadruple excitations. The effects of the relativity are also fully accounted for in the theoretical description. For the first time the leading-order quantum electrodynamics effects are fully incorporated for a many-electron molecule. Influence of the finite nuclear mass corrections (post-Born- Oppenheimer effects) turns out to be completely negligible for this system. The predicted well-depth (D-e = 934.6 +/- 2.5 cm(-1)) and the dissociation energy (D-0 = 807.7 cm(-1)) are in a very good agreement with the most recent experimental data. We confirm the existence of the weakly bound twelfth vibrational level [Patkowski et al. Science 2009, 326, 1382] that it lies just below the onset of the continuum.
机译:这项工作涉及AB初始势能曲线和铍二聚体的地态X-1 sigma(+)(+)(+)(g)的光谱常数计算。结果的高精度和可靠性是纸张的主要目标之一。为此,我们申请大量基础轨道轨道轨道组合,加上高级电子结构方法,包括三倍和四倍激励。在理论描述中,相对论的效果也是完全占据的。首次首次掺入全电子分子的前导量子电动力学效应。有限核群发(后出生后的oppenheimer效应)的影响结果对该系统完全可以忽略不计。预测的深度(D-E = 934.6 +/- 2.5cm(-1))和解离能(D-0 = 807.7cm(-1))与最新的实验数据非常好。我们确认存在弱束缚的第十二振动水平[Patkowski等人。科学2009,326,1382]它位于连续体的发作下方。

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