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环境紧束缚模型对镍和钴团簇的模拟。

Environmental tight-binding modeling of nickel and cobalt clusters.

机构信息

Interdisciplinary Centre for Advanced Materials Simulation, Ruhr Universität Bochum, Germany.

出版信息

J Phys Condens Matter. 2013 Mar 20;25(11):115502. doi: 10.1088/0953-8984/25/11/115502. Epub 2013 Feb 14.

Abstract

Tight-binding models derived from density functional theory potentially provide a systematic approach to the development of accurate and transferable models of multicomponent systems. We introduce a systematic methodology for environmental tight binding in which both the overlap and environmental contributions to the electronic structure are included. The parameters of the model are determined directly from ab initio considerations, thus providing a formal conceptual link to density functional approaches. In order to test the validity of the approach, the model is applied to small clusters of Ni and Co, whose electronic structure is largely determined by the interplay of tightly bound d-valent states and the disperse s-states. We numerically illustrate that it is essential to include environmental contributions in the tight-binding approach in order to reliably reproduce the electronic structure of such clusters.

摘要

从密度泛函理论导出的紧束缚模型为发展多组分体系的精确和可转移模型提供了一种系统的方法。我们引入了一种系统的环境紧束缚方法,其中包括重叠和环境对电子结构的贡献。模型的参数直接从第一性原理考虑确定,从而与密度泛函方法建立了正式的概念联系。为了检验该方法的有效性,将该模型应用于 Ni 和 Co 的小团簇,其电子结构主要由紧密束缚的 d 价态和弥散的 s 态之间的相互作用决定。我们数值说明,在紧束缚方法中必须包括环境贡献,才能可靠地再现此类团簇的电子结构。

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