论文标题

随机合金Znse $ _x $ s $ _ {1-x} $的结构和电子属性

Structural and electronic properties of the random alloy ZnSe$_x$S$_{1-x}$

论文作者

Sarkar, S., Eriksson, O., Sarma, D. D., Di Marco, I.

论文摘要

在本文中,我们在广义梯度近似中采用密度功能理论来研究固体溶液合金$ \ text {zn} \ text {se} _x \ text \ text {s} _ {1-x} $在Wurtzite结构中的结构和电子特性。我们使用不对晶体电位施加任何限制的超级细胞方法分析了原子尺度上键长和角度的特征。我们表明,原始Zns和ZNSE化合物的键长几乎保存在最近的邻居之间,这与Vegard定律在原子水平上有效是否有效。我们还表明,键长开始根据Vegard的定律从最近的第三个壳体开始行为,这反过来又决定了通过衍射实验确定的合金的平均晶格参数。鉴定出阴离子周围的基本构建块,显示为非刚毛,但仍保留数量。最后,几何分析与电子结构所表现出的趋势有关,尤其是带隙。根据可用的实验数据,发现后者与SE浓度相对于SE浓度表现出很小的偏差。通过假设二次依赖性,我们可以提取弓箭参数并通过在选定约束下使用各种计算来分析其各种贡献。响应于掺杂过程的结构变形被证明是偏离线性的驱动力。显示Zns和ZnSE之间的刚度差异在富含S和SE的区域中观察到的弓形参数的不对称行为中起着关键作用。

In this article we employ density functional theory in the generalized gradient approximation to investigate the structural and electronic properties of the solid solution alloy $\text{Zn}\text{Se}_x\text{S}_{1-x}$ in the wurtzite structure. We analyzed the character of the bond lengths and angles at the atomic scale, using a supercell approach that does not impose any constraint on the crystal potential. We show that the bond lengths of pristine ZnS and ZnSe compounds are almost preserved between nearest neighbors, which is different from what would be anticipated if Vegard's law were valid at the atomic level. We also show that bond lengths start behaving in accordance to Vegard's law from the third shell of nearest neighbors onward, which in turn determines the average lattice parameters of the alloys determined by diffraction experiments. Fundamental building blocks around the anions are identified and are shown to be non-rigid but still volume preserving. Finally, the geometrical analysis is connected to the trend exhibited by the electronic structure, and in particular by the band gap. The latter is found to exhibit a small deviation from the linearity with respect to the Se concentration, in accordance to available experimental data. By assuming a quadratic dependence, we can extract a bowing parameter and analyze various contributions to it with various calculations under selected constraints. The structural deformation in response to the doping process is shown to be the driving force behind the deviation from linearity. The difference in stiffness between ZnS and ZnSe is showed to play a key role in the asymmetric behavior of the bowing parameter observed in the S-rich and Se-rich regions.

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