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首页> 外文期刊>International Journal of Quantum Chemistry >Analytical evaluation of pseudopotential matrix elements with Gaussian-type solid harmonics of arbitrary angular momentum
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Analytical evaluation of pseudopotential matrix elements with Gaussian-type solid harmonics of arbitrary angular momentum

机译:具有任意角动量的高斯型固体谐波的伪势矩阵元素的分析评估

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摘要

An efficient formalism for evaluating pseudopotential matrix elements with Gaussian-type solid harmonics of arbitrary angular momentum is presented. It is based on the tensor coupling technique, which is especially well suited for treating Gaussian-type solid harmonics of arbitrary angular momentum. Closed analytical expressions are derived for the matrix elements as well as for their nuclear displacement derivatives. The efficiency of the implementation into our new parallel density functional program PARAGAUSS and the quality of the pseudopotential approach is tested for a set of representative molecules and cluster models. To this end the results of pseudopotential calculations are compared to those of nonrelativistic and scalar-relativistic all-electron calculations. (C) 2000 John Wiley & Sons, Inc. Int J Quantum Chem 79: 209-221, 2000. [References: 78]
机译:提出了一种利用任意角动量的高斯型固体谐波评估伪势矩阵元素的有效形式。它基于张量耦合技术,特别适合于处理任意角动量的高斯型固体谐波。得出了矩阵元素及其核位移导数的封闭分析表达式。对于一组代表性分子和簇模型,测试了在我们新的并行密度函数程序PARAGAUSS中的实现效率以及伪电位方法的质量。为此,将伪电位计算的结果与非相对论和标量相对论全电子计算的结果进行了比较。 (C)2000 John Wiley&Sons,Inc. Int J Quantum Chem 79:209-221,2000。[参考:78]

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