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首页> 外文期刊>The Journal of Chemical Physics >Shape and energy consistent pseudopotentials for correlated electron systems
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Shape and energy consistent pseudopotentials for correlated electron systems

机译:相关电子系统的形状和能量一致的假软件

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Amethod is developed for generating pseudopotentials for use in correlated-electron calculations. The paradigms of shape and energy consistency are combined and defined in terms of correlated-electron wave-functions. The resulting energy consistent correlated electron pseudopotentials (eCEPPs) are constructed for H, Li-F, Sc-Fe, and Cu. Their accuracy is quantified by comparing the relaxed molecular geometries and dissociation energies which they provide with all electron results, with all quantities evaluated using coupled cluster singles, doubles, and triples calculations. Errors inherent in the pseudopotentials are also compared with those arising from a number of approximations commonly used with pseudopotentials. The eCEPPs provide a significant improvement in optimised geometries and dissociation energies for small molecules, with errors for the latter being an order-of-magnitude smaller than for Hartree-Fock-based pseudopotentials available in the literature. Gaussian basis sets are optimised for use with these pseudopotentials. Published by AIP Publishing.
机译:用于产生用于相关电子计算的假软件的Amethod。形状和能量一致性的范式在相关 - 电子波函数方面结合和定义。所得到的能量一致相关电子假软障(Ecepps)是为H,Li-F,SC-Fe和Cu构建的。通过比较它们提供所有电子结果的松弛的分子几何形状和解离能量来量化它们的准确度,通过耦合簇单打,双打和三元计算来评估所有量。伪软件中固有的错误也与来自常用伪势常用的近似引起的那些相提并论。 Ecepps对小分子的优化几何形状和解离能提供了显着的改进,并且后者的误差是小于文献中可用的基于Hartree-Fock的伪能量的数量级。高斯的基础集经过优化与这些伪能源一起使用。通过AIP发布发布。

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