首页> 外文期刊>Journal of Applied Physics >An environment-dependent semi-empirical tight binding model suitable for electron transport in bulk metals, metal alloys, metallic interfaces, and metallic nanostructures. I. Model and validation
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An environment-dependent semi-empirical tight binding model suitable for electron transport in bulk metals, metal alloys, metallic interfaces, and metallic nanostructures. I. Model and validation

机译:一个环境相关的半经验紧密结合模型,适用于在大块金属,金属合金,金属界面和金属纳米结构中进行电子传输。一,模型与验证

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Semi-empirical Tight Binding (TB) is known to be a scalable and accurate atomistic representation for electron transport for realistically extended nano-scaled semiconductor devices that might contain millions of atoms. In this paper, an environment-aware and transferable TB model suitable for electronic structure and transport simulations in technologically relevant metals, metallic alloys, metal nanostructures, and metallic interface systems are described. Part I of this paper describes the development and validation of the new TB model. The new model incorporates intra-atomic diagonal and off-diagonal elements for implicit self-consistency and greater transferability across bonding environments. The dependence of the on-site energies on strain has been obtained by appealing to the Moments Theorem that links closed electron paths in the system to energy moments of angular momentum resolved local density of states obtained ab initio. The model matches self-consistent density functional theory electronic structure results for bulk face centered cubic metals with and without strain, metallic alloys, metallic interfaces, and metallic nanostructures with high accuracy and can be used in predictive electronic structure and transport problems in metallic systems at realistically extended length scales.
机译:众所周知,半经验的紧束缚(TB)是可扩展且准确的原子表示形式,用于电子传输,可实际扩展可能包含数百万个原子的纳米级半导体器件。在本文中,描述了适用于技术上相关的金属,金属合金,金属纳米结构和金属界面系统中电子结构和传输模拟的可感知环境且可转移的TB模型。本文的第一部分描述了新的结核病模型的开发和验证。新模型结合了原子内对角线和非对角线元素,以实现隐式的自洽性和更大的跨粘合环境的可传递性。现场能量对应变的依赖性已经通过吸引矩定理获得,该定理将系统中的闭合电子路径与角动量的能量矩联系起来,从头算来就获得了状态的局部密度。该模型与具有一致性和不具有应变性的体心中心立方金属,金属合金,金属界面和金属纳米结构的自洽密度泛函理论电子结构结果具有很高的准确性,可用于预测金属系统中的电子结构和运输问题实际扩展的长度刻度。

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  • 来源
    《Journal of Applied Physics》 |2014年第12期|1-12|共12页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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