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首页> 外文期刊>International Journal of Quantum Chemistry >Nuclear Cusp Conditions and Their Fulfillment in Molecular Calculations with SLATER Basis Sets
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Nuclear Cusp Conditions and Their Fulfillment in Molecular Calculations with SLATER Basis Sets

机译:SLATER基础集的分子计算中的核尖峰条件及其实现

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A short revision of the main antecedents on the nuclear cusp conditions is followed by a derivation of the general expressions of the conditions which must be accomplished by wave functions and densities. It is stressed that in case of the molecular densities, besides Kato’s cusp condition, there are also simple cusp conditions for the three dipole-type terms of the densities but not for terms of order higher than dipole. The degree of fulfillment of standard atomic and molecular calculations with Slater basis sets is tested, concluding that errors of spherical terms usually affect the third or fourth significant figures, being smaller as nuclear charges increase, and the errors of dipole-type components are greater than those of the spherical terms. In practice, improvements in the computational method or in the basis set do not guarantee a better fulfillment of the cusp conditions. Hydrogen is a special case which can yield poor results.
机译:在对核尖峰条件的主要先决条件进行了简短修改之后,得出了必须通过波动函数和波密度来实现的条件的一般表达式。需要强调的是,在分子密度的情况下,除了加藤的尖端条件外,对于密度的三个偶极子类型项,也存在简单的尖端条件,但对于高于偶极子的阶次条件则没有。测试了使用Slater基集的标准原子和分子计算的满足程度,得出的结论是,球形项的误差通常会影响第三或第四有效数字,随着核电荷的增加,该数值会变小,并且偶极型分量的误差会大于球形术语。实际上,对计算方法或基础集的改进不能保证更好地满足尖峰条件。氢是一种特殊情况,会产生较差的结果。

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