旋转晶格单晶体(RLS)中晶格旋转的来源

Evan J. Musterman, D. Savytskii, V. Dierolf, H. Jain
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引用次数: 2

摘要

摘要激光加热可用于在玻璃中产生具有恒定速率旋转的晶格的单晶结构。这种超材料可以提供传统晶体结构所不允许的特性。为了建立这种晶格旋转的机制,我们使用透射电子显微镜(TEM)直接观察和表征了在Sb-S-I玻璃中制备的Sb2S3晶体线作为模型系统的位错。由边缘位错密度和Burgers矢量计算的晶格旋转与电子背散射衍射(EBSD)和选择区域衍射图(SADP)实验测定的晶格旋转值一致。这些结果首次直接证明了旋转晶格单晶体(RLS)中晶格旋转的位错机制,以及很可能在球晶中看到的其他形式的生长驱动的弯曲、扭曲和非晶体分支。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Source of Lattice Rotation in Rotating Lattice Single (RLS) Crystals
Abstract Laser heating can be used to produce single crystal architectures in glass with a lattice that rotates at a constant rate. Such metamaterials can offer properties that are disallowed by conventional crystal structures. To establish the mechanism of this lattice rotation, we used transmission electron microscopy (TEM) to directly observe and characterize dislocations in Sb2S3 crystal lines fabricated in Sb-S-I glass as a model system. The lattice rotation calculated from the density and Burgers vectors of edge dislocations agrees with lattice rotation values experimentally determined by electron backscatter diffraction (EBSD) and selected area diffraction patterns (SADP). These results provide the first direct proof of the dislocation mechanism of lattice rotation in rotating lattice single (RLS) crystals, and very likely other forms of growth actuated bending, twisting and noncrystallographic branching as seen in spherulites.
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