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扭曲菱面体堆叠双层WSe莫尔超晶格中的拓扑极性网络。

Topological Polar Networks in Twisted Rhombohedral-Stacked Bilayer WSe Moiré Superlattices.

作者信息

Li Yue, Wan Siyuan, Liu Huanlin, Huang Hanying, Li Zhixiong, Weng Xiaoyao, Zhu Min, Zhou Yangbo

机构信息

School of Instrument Science and Optoelectronic Engineering, Nanchang HangKong University, Nanchang 330063, China.

School of Physics and Materials Science, Nanchang University, Nanchang 330031, China.

出版信息

Nano Lett. 2024 Oct 23;24(42):13349-13355. doi: 10.1021/acs.nanolett.4c03914. Epub 2024 Oct 14.

Abstract

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 WSe, 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.

摘要

滑动铁电性使具有固有中心对称的材料能够通过堆叠工程产生自发极化,扩展了铁电材料家族并丰富了低维铁电物理领域。在诸如六方氮化硼、石墨烯和过渡金属硫族化合物等具有反演对称性破缺的扭曲双层体系中,发现了极化垂直于原子运动的垂直铁电畴。在本研究中,我们证明这种对称性破缺也会在扭曲双层菱面体堆叠的WSe₂中诱导横向极化网络,这是通过对称性考虑和矢量压电力显微镜(V-PFM)结果确定的。鞍点(SP)区域的横向极化(LP)形成头对头的三角形涡旋,呈现出宽度达40 nm的椭圆形畴形状。横向极化包围垂直极化(VP),形成布洛赫型磁单极子和反磁单极子网络。我们的工作增进了对莫尔铁电体中畴分布和极化取向的理解。

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