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首页> 外文期刊>Journal of Physics. Condensed Matter >Importance of bulk states for the electronic structure of semiconductor surfaces: implications for finite slabs
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Importance of bulk states for the electronic structure of semiconductor surfaces: implications for finite slabs

机译:散装状态对半导体表面的电子结构的重要性:有限板的含义

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We investigate the influence of slab thickness on the electronic structure of the Si(100)-p(2x2) surface in density functional theory (DFT) calculations, considering both density of states and band structure. Our calculations, with slab thicknesses of up to 78 atomic layers, reveal that the slab thickness profoundly affects the surface band structure, particularly the dangling bond states of the silicon dimers near the Fermi level. We find that, to precisely reproduce the surface bands, the slab thickness needs to be large enough to completely converge the bulk bands in the slab. In the case of the Si(100) surface, the dispersion features of the surface bands, such as the band shape and width, converge when the slab thickness is larger than 30 layers. Complete convergence of both the surface and bulk bands in the slab is only achieved when the slab thickness is greater than 60 layers.
机译:考虑到态度和带结构的密度,我们研究了平板厚度对Si(100)-P(2x2)表面的电子结构的影响,考虑到状态和带结构的密度。 我们的计算,具有多达78个原子层的平板厚度,揭示了平板厚度深刻地影响表面带结构,特别是硅二聚体附近的硅二聚体的悬空粘合状态。 我们发现,为了精确地再现表面带,平板厚度需要足够大以完全收敛板中的散装带。 在Si(100)表面的情况下,表面带的色散特征,例如带状和宽度,当板坯厚度大于30层时会聚。 仅当板坯厚度大于60层时,才能完成板坯中的表面和散装带的完全收敛。

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