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Theoretical investigation of the alkaline-earth dihydrides from relativistic all-electron, pseudopotential, and density-functional study

机译:相对论全电子,pseudo势和密度泛函研究碱土二氢化物的理论研究

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摘要

Highly precise ground state geometries, harmonic vibrational frequencies and force constants of alkaline-earth dihydrides from CaH2 to RaH2 are obtained using relativistic small-core energy-consistent effective core potentials at the coupled-cluster level. The results are compared with all-electron as well as density functional calculations. All-electron results, in particular, clearly show the importance of relativistic effects in the properties considered in this paper. The monotonic trends in the geometries are explained in terms of second-order perturbation theory. Trends in the force constants are monotonic except for the bending mode where an anomaly occurs from BaH2 to RaH2. It is rationalized in terms of reduced s-d hybridization due to relativity, which is shown to be an energy effect attributed to the stabilization of the s orbital. The pseudopotentials show an excellent performance in comparison with all-electron methods and are therefore successfully transferred to molecular cases. The density functional methods, however, suffer from functional dependencies with B3LYP performing the best in this case.
机译:使用相对论的小核能量一致有效磁芯电势在耦合簇水平上获得了从CaH2到RaH2的高度精确的基态几何形状,谐波振动频率和碱土二氢化物的力常数。将结果与全电子以及密度函数计算进行比较。特别是,全电子结果清楚地表明了相对论效应在本文考虑的特性中的重要性。用二阶微扰理论解释了几何中的单调趋势。除了从BaH2到RaH2发生异常的弯曲模式外,力常数的趋势是单调的。根据相对性降低的s-d杂化,使之合理化,这被证明是归因于s轨道稳定的能量效应。与全电子方法相比,伪电势显示出优异的性能,因此已成功转移到分子情况下。但是,密度函数方法在B3LYP表现最好的情况下受到函数依赖性的困扰。

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