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Size-dependent optical absorption modulation of Si/Ge and Ge/Si core/shell nanowires with different cross-sectional geometries

机译:具有不同横截面几何形状的Si / Ge和Ge / Si核/壳纳米线的尺寸依赖性光吸收调制

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We present an atomic-level and quantitative study of the absorption properties in Si/Ge and Ge/Si core/shell nanowires (CSNWs) along [110] direction with different cross-sectional geometries using the atomic bond relaxation method. We find that the strain existing in self-equilibrium state of CSNWs and associated with elastic energy originating from interface mismatch and surface relaxation affect the band shift and absorption properties. Compared to the CSNWs with tetragonal, hexagonal and circular shapes, the triangular CSNWs have the largest band gap shift at a fixed strain and the smallest absorption coefficient at a determinate incident light wavelength. The tunable absorption property, realized by controlling the size and geometry structure, could be helpful for nanoelectronic applications.
机译:我们使用原子键弛豫方法,对具有不同横截面几何形状的[110]方向上的Si / Ge和Ge / Si核/壳纳米线(CSNWs)的吸收特性进行了原子级的定量研究。我们发现,CSNWs处于自平衡状态并与源自界面失配和表面弛豫的弹性能相关的应变会影响能带位移和吸收性能。与具有四边形,六边形和圆形的CSNW相比,三角形CSNW在固定应变下具有最大的带隙位移,在确定的入射光波长下具有最小的吸收系数。通过控制尺寸和几何结构实现的可调吸收特性可能对纳米电子应用有所帮助。

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