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第一性原理 LCAO 电子结构计算的展开方法。

Unfolding method for first-principles LCAO electronic structure calculations.

机构信息

School of Materials Science, Japan Advanced Institute of Science and Technology, Nomi, Ishikawa 923-1292, Japan.

出版信息

J Phys Condens Matter. 2013 Aug 28;25(34):345501. doi: 10.1088/0953-8984/25/34/345501.

Abstract

Unfolding the band structure of a supercell to a normal cell enables us to investigate how symmetry breakers such as surfaces and impurities perturb the band structure of the normal cell. We generalize the unfolding method, originally developed based on Wannier functions, to the linear combination of atomic orbitals (LCAO) method, and present a general formula to calculate the unfolded spectral weight. The LCAO basis set is ideal for the unfolding method because the basis functions allocated to each atomic species are invariant regardless of the existence of surface and impurity. The unfolded spectral weight is well defined by the property of the LCAO basis functions. In exchange for the property, the non-orthogonality of the LCAO basis functions has to be taken into account. We show how the non-orthogonality can be properly incorporated in the general formula. As an illustration of the method, we calculate the dispersive quantized spectral weight of a ZrB2 slab and show strong spectral broadening in the out-of-plane direction, demonstrating the usefulness of the unfolding method.

摘要

将超晶胞的能带结构展开到正常晶胞,使我们能够研究表面和杂质等对称破缺如何扰动正常晶胞的能带结构。我们将最初基于 Wannier 函数开发的展开方法推广到线性组合原子轨道(LCAO)方法,并提出了一种计算展开光谱权重的通用公式。LCAO 基组非常适合展开方法,因为分配给每个原子种类的基函数在存在表面和杂质的情况下是不变的。展开的光谱权重由 LCAO 基函数的性质很好地定义。为了换取这一性质,必须考虑 LCAO 基函数的非正交性。我们展示了如何在通用公式中正确纳入非正交性。作为该方法的说明,我们计算了 ZrB2 薄片的色散量子化光谱权重,并显示出在面外方向上的强烈光谱展宽,证明了展开方法的有用性。

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