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Threading Dislocations Piercing the Free Surface of an Anisotropic Hexagonal Crystal: Review of Theoretical Approaches

机译:穿刺刺穿各向异性六边形晶体的自由表面:审查理论方法

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Inclined threading dislocations (TDs) piercing the oriented free surface of a crystal are currently observed after growth of oriented thin films on substrates. Up to date the unique way to treat their anisotropic elastic properties nearby the free surface region is to use the integral formalism, which assumes no dislocation core size and needs numerical double integrations. In a first stage of the work, a new and alternative approach to the integral formalism is developed using double Fourier series and the concept of a finite core size, which is often observed in high-resolution transmission electron microscopy. In a second stage, the integral formalism and the Fourier series approaches are applied to the important case of a TD piercing the basal free surface of a hexagonal crystal. For this particular geometry, easy-to-use expressions are derived and compared to a third approach previously known for a plate-like crystal. Finally, the numerical interest and the convergence of these approaches are tested using the basal free surface of the GaN compound, in particular for TDs with Burgers vectors c and (a
机译:在衬底上取向的薄膜生长后,目前观察刺穿晶体的取向自由表面的倾斜穿线脱位(TDS)。最新迄今为止自由表面区域附近治疗其各向异性弹性物质的独特方式是使用整体形式主义,这不承担任何脱位核心尺寸,需要数值双集成。在工作的第一阶段,使用双傅立叶系列和有限核心尺寸的概念来开发一种新的和替代方案的方法,这些方法通常在高分辨率透射电子显微镜中观察到。在第二阶段,将整体形式主义和傅立叶串联方法应用于夹尖晶体的基底自由表面的Td的重要情况。对于这种特定的几何形状,得出易于使用的表达式,并将其与先前已知的板状晶体已知的第三种方法进行比较。最后,使用GaN化合物的基础自由表面来测试这些方法的数值兴趣和收敛,特别是对于具有汉堡载体C的TD和(a

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