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Optical properties of Ge and Si nanosheets - confinement and symmetry effects

机译:Ge和Si纳米片的光学性质-约束和对称效应

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Comparison between silicon and germanium quantum sheets has been made regarding their electronic and optical properties. Ab initio calculations have been applied for this purpose by mean of the linearized augmented plane wave method. Quantum confinement is found to shift the band gap of both Si and Ge bulk to the blue, however this upshift depends strongly on the surface orientation. Moreover also the nature of the band gap is related to the surface symmetry: for (100)-oriented films the band gap becomes direct for both semiconductors, whereas the (110)- and (111)-oriented films show a different behavior. In the first case the band gap is direct for Si and indirect for Ge, in the second it is direct for Ge and indirect for Si. Concerning the optical properties, since in the Si films the folded bulk band energies are found to retain their original indirect character, all the Si films have an intense absorption peak only at high energies corresponding to the blueshifted direct band gap of Si bulk. In Ge films the conduction band minimum retains a strong F component. Therefore, dielectric function calculations clearly show that Ge films have a strong optical absorption in the visual energy region. Analysis of the squared optical matrix elements is also presented and the data are compared to the results for GaAs. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 48]
机译:已经就硅和锗量子片的电子和光学性质进行了比较。为此,已经通过线性化增强平面波方法应用了从头计算。发现量子限制将Si和Ge块的带隙移至蓝色,但是这种上移强烈取决于表面取向。此外,带隙的性质也与表面对称性有关:对于(100)取向的薄膜,带隙对于两种半导体都是直接的,而(110)和(111)取向的薄膜表现出不同的行为。在第一种情况下,带隙对于Si是直接的,对于Ge是间接的,第二种情况,对于Ge是直接的,对于Si是间接的。关于光学性能,由于在Si膜中发现折叠的体带能保持其原始的间接特性,因此所有Si膜仅在对应于Si体的蓝移直接带隙的高能量下才具有强烈的吸收峰。在锗薄膜中,导带最小值保留了很强的F分量。因此,介电函数计算清楚地表明,Ge膜在可见能区域具有很强的光学吸收。还介绍了平方光学矩阵元素的分析,并将数据与GaAs的结果进行了比较。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:48]

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