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首页> 外文期刊>The Journal of Chemical Physics >Embedding procedure for ab initio correlation calculations in group II metals
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Embedding procedure for ab initio correlation calculations in group II metals

机译:II类金属从头算相关性的嵌入程序

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摘要

In order to apply ab initio wave-function-based correlation methods to metals, it is desirable to split the calculation into a mean-field part and a correlation part. Whereas the mean-field part (here Hartree-Fock) is performed in the extended periodic system, it is necessary to use for the correlation part local wave-function-based correlation methods in finite fragments of the solid. For these finite entities it is necessary to construct an embedding. The authors suggest an embedding scheme which has itself no metallic character but can mimic the metal in the internal region, where the atoms are correlated. With this embedding it is also possible to localize the metallic orbitals in the central part. The long-range nonadditive contributions of metallicity and correlation are treated with the method of increments. In this paper they present different ways to construct such an embedding and discuss the influence of the embedding on the correlation energy of the solid. (c) 2007 American Institute of Physics.
机译:为了将基于从头算波函数的相关方法应用于金属,期望将计算划分为平均场部分和相关部分。尽管均场部分(此处为Hartree-Fock)是在扩展周期系统中执行的,但对于相关部分,有必要在固体有限片段中使用基于局部波动函数的相关方法。对于这些有限实体,有必要构造一个嵌入。作者提出了一种嵌入方案,该方案本身没有金属特性,但可以模仿原子相关的内部区域中的金属。通过这种嵌入,还可以将金属轨道定位在中心部分。用增量方法处理金属性和相关性的远程非加性贡献。在本文中,他们提出了构建此类嵌入的不同方法,并讨论了嵌入对固体相关能的影响。 (c)2007年美国物理研究所。

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