Wen Cai
1School of Science,Southwest University of Science and Technology,Mianyang 621010,China.
Microsc Microanal. 2017 Jun;23(3):449-459. doi: 10.1017/S1431927617000137. Epub 2017 Mar 9.
The atomic reconstruction of a misfit dislocation (MD) core causes change in the strain distribution around the core. Several MD cores at the AlSb/GaAs (001) cubic zincblende interface, including a symmetrical glide set Lomer dislocation (LD), a left-displaced glide set LD, a glide set LD with an atomic step, a symmetrical shuffle set LD, and a 60° dislocation pair, were studied using simulated projected potential and aberration-corrected transmission electron microscope images. Image deconvolution was also used to restore structure images from nonoptimum-defocus images. The corresponding biaxial strain maps, ε xx (in-plane) and ε yy (out-of-plane), were obtained by geometric phase analysis using the GaAs substrate as the reference lattice. The results show that atomic structure characteristics of MD cores can be revealed by the strain maps. The strain maps should be measured from optimum-defocus images or restored structure images. Furthermore, the ε xx strain map has been found more accurate than the ε yy strain map for MD cores, and the specimen thickness should be below the critical thickness due to the influence of dynamical scattering.
错配位错(MD)核心的原子重构会导致核心周围应变分布的变化。利用模拟投影势和像差校正透射电子显微镜图像,研究了AlSb/GaAs(001)立方闪锌矿界面处的几个MD核心,包括对称滑移集洛默位错(LD)、左移滑移集LD、带有原子台阶的滑移集LD、对称无序集LD和60°位错对。图像去卷积也用于从非最佳散焦图像中恢复结构图像。通过以GaAs衬底为参考晶格的几何相位分析,获得了相应的双轴应变图εxx(面内)和εyy(面外)。结果表明,应变图可以揭示MD核心的原子结构特征。应变图应从最佳散焦图像或恢复的结构图像中测量。此外,对于MD核心,已发现εxx应变图比εyy应变图更准确,并且由于动态散射的影响,样品厚度应低于临界厚度。