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Elastic fields and energies of coherent surface islands

机译:相干表面岛的弹性场和能量

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We present simple models based on isotropic elasticity for determining the stress fields in the vicinity of, and the elastic energy associated with, coherent surface islands (i.e. a quantum dot or a nanorod). The first method treats the surface island as an areal point of dilatation and does not account for details of the island shape. Next, the finite element method is used to study simple island shapes such as spherical caps and cylinders, with a particular focus on the island aspect ratio. The latter is used in conjunction with the analytic results to develop empirical expressions for stress field and energy as functions of aspect ratio, which are somewhat insensitive to other features of the geometry. The analyses are used to assess the effect of lattice mismatch, dot volume and dot/surface contact area on the induced stresses and elastic energies. Furthermore, the interaction energy between surface islands is determined by finite element analyses. Outputs from these analyses are then used in an optimization of several cases of ordering of islands. The results show that for a range of idealized geometries, the shape of the surface island has little impact on the strain energy, and thereby the interaction energy.
机译:我们提出了基于各向同性弹性的简单模型,用于确定相干表面岛(即量子点或纳米棒)附近的应力场以及与之相关的弹性能。第一种方法将表面岛视为扩张的面点,并且不考虑岛形状的细节。接下来,使用有限元方法研究简单的岛形形状,例如球形帽和圆柱体,并特别关注岛形长宽比。后者与分析结果结合使用,以开发应力场和能量作为纵横比的函数的经验表达式,这些表达式对几何的其他特征有些不敏感。这些分析用于评估晶格失配,点体积和点/表面接触面积对感应应力和弹性能的影响。此外,通过有限元分析确定表面岛之间的相互作用能。然后,将这些分析的输出用于优化岛屿排序的几种情况。结果表明,对于一系列理想的几何形状,表面岛的形状对应变能以及相互作用能的影响很小。

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