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Fully analytic valence force field model for the elastic and inner elastic properties of diamond and zincblende crystals

机译:金刚石和锌纤维晶体弹性和内部弹性性能的全分析价力场模型

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摘要

Using a valence force field model based on that introduced by Martin, we present three related methods through which we analytically determine valence force field parameters. The methods introduced allow easy derivation of valence force field parameters in terms of the Kleinman parameter zeta and bulk properties of zincblende and diamond crystals. We start with a model suited for covalent and weakly ionic materials, where the valence force field parameters are derived in terms of and the bulk elastic constants Cu-11, C-12, and C-44. We show that this model breaks down as the material becomes more ionic and specifically when the elastic anisotropy factor A = 2C(44)/(C-11 - C-12) > 2. The analytic model can be stabilized for ionic materials by including Martin's electrostatic terms with effective cation and anion charges in the valence force field model. Inclusion of effective charges determined via the optical phonon mode splitting provides a stable model for all but two of the materials considered (zincblende GaN and AN). A stable model is obtained for all materials considered by also utilizing the inner elastic constant E-11 to determine the magnitude of the effective charges used in the Coulomb interaction. Test calculations show that the models describe well structural relaxation in superlattices and alloys and reproduce key phonon band structure features.
机译:使用基于Martin引入的价值场模型,我们提出了三种相关方法,我们通过其分析确定了价值场参数。在Zinlende和金刚石晶体的Kleinman参数Zeta和块状性能方面,引入的方法允许易于衍生价值场参数。我们从适用于共价和弱离子材料的模型开始,其中源于和块状弹性常数Cu-11,C-12和C-44的衍生价源场参数。我们表明,由于材料变得更加离子,并且特别是当弹性各向异性因子A = 2C(44)/(C-11-C-12)> 2时,该模型随着材料变得更加离子而分裂。通过包括分析模型,可以通过包括离子材料稳定离子材料Martin的静电术语,具有有效的阳离子和无花果力场模型中的阴离子。包含通过光学声子模式分裂确定的有效电荷为所有所考虑的两种材料提供稳定的模型(Zincblende GaN和AN)。对于通过内弹性常数E-11考虑的所有材料获得稳定模型,以确定库仑相互作用中使用的有效电荷的大小。测试计算表明,该模型在超晶格和合金中描述了井结构松弛,再现密钥声子带结构特征。

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