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Performance of correlation functionals in ab initio chemisorption cluster-model calculations: Alkali metals on Si(111)

机译:从头算化学吸附簇模型计算中相关功能的性能:Si(111)上的碱金属

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摘要

The performance of different correlation functionals has been tested for alkali metals, Li to Cs, interacting with cluster models simulating different active sites of the Si(111) surface. In all cases, the ab initio Hartree-Fock density has been obtained and used as a starting point. The electronic correlation energy is then introduced as an a posteriori correction to the Hartree-Fock energy using different correlation functionals. By making use of the ionic nature of the interaction and of different dissociation limits we have been able to prove that all functionals tested introduce the right correlation energy, although to a different extent. Hence, correlation functionals appear as an effective and easy way to introduce electronic correlation in the ab initio Hartree-Fock description of the chemisorption bond in complex systems where conventional configuration interaction techniques cannot be used. However, the calculated energies may differ by some tens of eV. Therefore, these methods can be employed to get a qualitative idea of how important correlation effects are, but they have some limitations if accurate binding energies are to be obtained.
机译:已测试了各种相关功能的性能,适用于碱金属(从Li到Cs),并与模拟Si(111)表面不同活性位点的簇模型相互作用。在所有情况下,均已获得从头算起的Hartree-Fock密度并将其用作起点。然后使用不同的相关函数将电子相关能量作为对Hartree-Fock能量的后验校正。通过利用相互作用的离子性质和不同的解离限度,我们已经证明,尽管程度不同,但所有测试的功能均引入了正确的相关能。因此,在不能使用常规构型相互作用技术的复杂系统中,相关功能似乎是在化学吸附键的从头开始的Hartree-Fock描述中引入电子相关的一种有效且简便的方法。但是,计算出的能量可能相差数十eV。因此,可以采用这些方法来获得有关相关效应有多重要的定性观点,但是如果要获得准确的结合能,它们就会受到一些限制。

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