Li Jun, Chiang Fu-Kuo, Chen Zhen, Ma Chao, Chu Ming-Wen, Chen Cheng-Hsuan, Tian Huanfang, Yang Huaixin, Li Jianqi
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Sci Rep. 2016 Jun 21;6:28047. doi: 10.1038/srep28047.
Essential structural properties of the non-trivial "string-wall-bounded" topological defects in hexagonal manganites are studied through homotopy group theory and spherical aberration-corrected scanning transmission electron microscopy. The appearance of a "string-wall-bounded" configuration in RMnO3 is shown to be strongly linked with the transformation of the degeneracy space. The defect core regions (~50 Å) mainly adopt the continuous U(1) symmetry of the high-temperature phase, which is essential for the formation and proliferation of vortices. Direct visualization of vortex strings at atomic scale provides insight into the mechanisms and macro-behavior of topological defects in crystalline materials.
通过同伦群理论和球差校正扫描透射电子显微镜,研究了六方锰酸盐中非平凡“弦壁束缚”拓扑缺陷的基本结构特性。结果表明,RMnO₃中“弦壁束缚”构型的出现与简并空间的转变密切相关。缺陷核心区域(约50 Å)主要采用高温相的连续U(1)对称性,这对涡旋的形成和增殖至关重要。在原子尺度上直接观察涡旋弦,有助于深入了解晶体材料中拓扑缺陷的机制和宏观行为。