超晶格
云纹
三角晶系
材料科学
双层
极地的
凝聚态物理
拓扑(电路)
光电子学
物理
光学
结晶学
晶体结构
化学
膜
数学
生物化学
组合数学
天文
作者
Yue Li,Siyuan Wan,Huanlin Liu,Hanying Huang,Zhi-xiong Li,Xin Weng,Min Zhu,Yangbo Zhou
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-10-14
卷期号:24 (42): 13349-13355
被引量:9
标识
DOI:10.1021/acs.nanolett.4c03914
摘要
Sliding ferroelectricity enables materials with intrinsic centrosymmetric symmetry to generate spontaneous polarization via stacking engineering, extending the family of ferroelectric materials and enriching the field of low-dimensional ferroelectric physics. Vertical ferroelectric domains, where the polarization is perpendicular to atomic motion, have been discovered in twisted bilayers of inversion symmetry broken systems such as hexagonal boron nitride, graphene, and transition metal chalcogenides. In this study, we demonstrate that this symmetry breaking also induces lateral polar networks in twisted bilayer rhombohedral-stacked WSe2, as determined through symmetry considerations and vector piezoresponse force microscopy (V-PFM) results. Lateral polarization (LP) in saddle point (SP) regions forms head-to-tail triangular vortices, exhibiting elliptical domain shapes with widths up to 40 nm. The LP encloses the vertical polarization (VP), forming a network of Bloch-type merons and antimerons. Our work enhances the understanding of domain distribution and polarization orientation in moiré ferroelectrics.
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