材料科学
衍射
分子束外延
位错
光学
单色
布拉格定律
晶格常数
基质(水族馆)
外延
衍射形貌
结晶学
X射线晶体学
光电子学
化学
纳米技术
物理
复合材料
地质学
海洋学
图层(电子)
作者
Can Yildirim,P. Ballet,Jean‐Louis Santailler,Dominique Giotta,Rémy Obrecht,Thu Nhi Tran Thi,J. Baruchel,D. Brellier
标识
DOI:10.1107/s1600577520014149
摘要
High-quality Hg 1– x Cd x Te (MCT) single crystals are essential for two-dimensional infrared detector arrays. Crystal quality plays an important role on the performance of these devices. Here, the dislocations present at the interface of CdZnTe (CZT) substrates and liquid-phase epitaxy grown MCT epilayers are investigated using X-ray Bragg diffraction imaging (XBDI). The diffraction contributions coming from the threading dislocations (TDs) of the CZT substrate and the MCT epilayers are separated using weak-beam conditions in projection topographs. The results clearly suggest that the lattice parameter of the growing MCT epilayer is, at the growth inception, very close to that of the CZT substrate and gradually departs from the substrate's lattice parameter as the growth advances. Moreover, the relative growth velocity of the MCT epilayer around the TDs is found to be faster by a factor of two to four compared with the matrix. In addition, a fast alternative method to the conventional characterization methods for probing crystals with low dislocation density such as atomic force microscopy and optical interferometry is introduced. A 1.5 mm × 1.5 mm area map of the epilayer defects with sub-micrometre spatial resolution is generated, using section XBDI, by blocking the diffraction contribution of the substrate and scanning the sample spatially.
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