首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural parameters, band-gap bowings and phase diagrams of zinc-blende Sc_(1-x)In_xP ternary alloys: A FP-LAPW study
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Structural parameters, band-gap bowings and phase diagrams of zinc-blende Sc_(1-x)In_xP ternary alloys: A FP-LAPW study

机译:闪锌锌Sc_(1-x)In_xP三元合金的结构参数,带隙弯曲和相图:FP-LAPW研究

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摘要

Using first-principles total-energy calculations, we investigate the structural, electronic and thermody-namic properties of the cubic Sc_(1-x)In_xP semiconducting alloys. The calculations are based on the full-potential linearized-augmented plane wave (FP-LAPW) method within density functional theory (DFT). The exchange-correlation effect is treated by both local-density approximation (LDA) and generalized-gradient approximation (GGA). In the latter approach, both Perdew-Burke-Ernzerhof (PBE) and EngelVo-sko (EV) functional of the exchange-correlation energy were used. The effect of atomic composition on structural parameters, band-gap energy, mixing enthalpy and phase diagram was analyzed for x = 0, 0.25, 0.5, 0.75, 1. Lattice constant, bulk modulus, and band-gap energy for zinc-blende Sc_(1-x)In_xP alloys show nonlinear dependence on the aluminium composition x. Deviations of the lattice constant from Vegard's law, and deviations of the bulk modulus and band-gap energy from linear concentration dependence (LCD) were found. The variation of the calculated equilibrium lattice constant versus indium concentration shows a small deviation from Vegard's law with upward bowing parameter of -0.043 A and -0.058 A for PBE and LDA, respectively. The bulk modulus as a function of indium composition shows a small deviation from the linear concentration dependence (LCD) with upward bowing equal to -0.790 GPa using PBE, and with net downward bowing of 0.847 GPa using LDA. The results show that the band gap undergoes a direct (X -> X)-to-direct [Г ->Г) transition at a given indium composition x. The physical origin of the band-gap bowing in zinc-blende Sc_(1-x)In_xP semiconducting alloys was investigated. The calculated excess mixing enthalpy is positive over the entire indium composition range.
机译:使用第一性原理的总能量计算,我们研究了立方Sc_(1-x)In_xP半导体合金的结构,电子和热力学性质。这些计算基于密度泛函理论(DFT)中的全势线性化增强平面波(FP-LAPW)方法。交换相关效应通过局部密度近似(LDA)和广义梯度近似(GGA)进行处理。在后一种方法中,使用了具有交换相关能量功能的Perdew-Burke-Ernzerhof(PBE)和EngelVo-sko(EV)。分析了x = 0、0.25、0.5、0.75、1时原子组成对结构参数,带隙能,混合焓和相图的影响。闪锌矿Sc_的晶格常数,体积模量和带隙能(1-x)In_xP合金显示出对铝成分x的非线性依赖性。发现了晶格常数与Vegard定律的偏差以及体积模量和带隙能量与线性浓度依赖性(LCD)的偏差。计算出的平衡晶格常数相对于铟浓度的变化显示出与Vegard定律的微小偏差,其中PBE和LDA的向上弯曲参数分别为-0.043 A和-0.058A。体积模量作为铟成分的函数,与线性浓度相关性(LCD)表现出较小的偏差,使用PBE时向上弯曲等于-0.790 GPa,使用LDA时其净向下弯曲为0.847 GPa。结果表明,在给定的铟组成x下,带隙经历了直接(X-> X)到直接[Г->Г)跃迁。研究了闪锌矿Sc_(1-x)In_xP半导体合金中带隙弯曲的物理起源。在整个铟组成范围内,计算出的过量混合焓为正。

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