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ShanghaiTech University Knowledge Management System
Layer thickness crossover of type-II multiferroic magnetism in NiI2 | |
2023-07-20 | |
状态 | 已发表 |
摘要 | The discovery of atomically thin van der Waals ferroelectric and magnetic materials encourages the exploration of 2D multiferroics, which holds the promise to understand fascinating magnetoelectric interactions and fabricate advanced spintronic devices. In addition to building a heterostructure consisting of ferroelectric and magnetic ingredients, thinning down layered multiferroics of spin origin such as NiI2 becomes a natural route to realize 2D multiferroicity. However, the layer-dependent behavior, widely known in the community of 2D materials, necessitates a rigorous scrutiny of the multiferroic order in the few-layer limit. Here, we interrogate the layer thickness crossover of helimagnetism in NiI2 that drives the ferroelectricity and thereby type-II multiferroicity. By using wavelength-dependent polarization-resolved optical second harmonic generation (SHG) to probe the ferroic symmetry, we find that the SHG arises from the inversion-symmetry-breaking magnetic order, not previously assumed ferroelectricity. This magnetism-induced SHG is only observed in bilayer or thicker layers, and vanishes in monolayer, suggesting the critical role of interlayer exchange interaction in breaking the degeneracy of geometrically frustrated spin structures in triangular lattice and stabilizing the type-II multiferroic magnetism in few-layers. While the helimagnetic transition temperature is layer dependent, the few-layer NiI2 exhibits another thickness evolution and reaches the bulk-like behavior in trilayer, indicated by the intermediate centrosymmetric antiferromagnetic state as revealed in Raman spectroscopy. Our work therefore highlights the magnetic contribution to SHG and Raman spectroscopy in reduced dimension and guides the optical study of 2D multiferroics. |
DOI | arXiv:2307.10686 |
相关网址 | 查看原文 |
出处 | Arxiv |
WOS记录号 | PPRN:74078848 |
WOS类目 | Physics, Condensed Matter |
资助项目 | National Key Research and Development Program of China[ |
文献类型 | 预印本 |
条目标识符 | https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/381384 |
专题 | 物质科学与技术学院 物质科学与技术学院_PI研究组_郭艳峰组 物质科学与技术学院_博士生 |
通讯作者 | Wu, Shiwei |
作者单位 | 1.Fudan Univ, State Key Lab Surface Phys, MOE, Key Lab Micro & Nano Photon Struct, Shanghai 200433, Peoples R China 2.Fudan Univ, Dept Phys, Shanghai 200433, Peoples R China 3.ShanghaiTech Univ, Sch Phys Sci & Technol, Shanghai 201210, Peoples R China 4.ShanghaiTech Univ, ShanghaiTech Lab Topol Phys, Shanghai 201210, Peoples R China 5.Shanghai Qi Zhi Inst, Shanghai 200232, Peoples R China 6.Fudan Univ, Inst Nanoelect Devices & Quantum Comp, Shanghai 200433, Peoples R China 7.Fudan Univ, Zhangjiang Fudan Int Innovat Ctr, Shanghai 200433, Peoples R China 8.Shanghai Res Ctr Quantum Sci, Shanghai 201315, Peoples R China |
推荐引用方式 GB/T 7714 | Wu, Shuang,Chen, Xinyu,Hong, Canyu,et al. Layer thickness crossover of type-II multiferroic magnetism in NiI2. 2023. |
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