首页
关于我们
​bevictor韦德国际简介
经理致辞
领导团队
历史沿革
团队队伍
教职人员
实验室人员
科学研究
研究团队
研究进展
支撑平台
人才培养
旗下产业
研究生教育
物理实验教学中心
教育培训
党团工作
党建工作
团建工作
教师风采
员工寄语
招生录取
本科生招生
研究生招生
国际交流
交流访问
学术会议
最新动态
学术讲座
通知公告
综合新闻
bevictor韦德国际主页
邮箱登录

Spin-resolved imaging of atomic-scale helimagnetism in mono- and bilayer NiI2

2025-09-24



Abstract

Noncollinear magnetic orders in monolayer van der Waals magnets are crucial for probing delicate magnetic interactions under minimal spatial constraints and advancing miniaturized spintronic devices. Despite their significance, achieving atomic-scale identification remains challenging. In this study, we utilized spin-polarized scanning tunneling microscopy and density functional theory calculations to identify spin-spiral orders in mono- and bilayer NiI 2, grown on graphene-covered SiC(0001) substrates. We found two distinct spin-spiral states with Q vectors aligning and deviating by 7° from the lattice direction, exhibiting periodicities of 4.54 and 5.01 times the lattice constant, respectively. These findings contrast with bulk properties and align closely with our theoretical calculations. Surprisingly, the nonmultiples of spin spirals within finite-sized magnetic domains induce net magnetic moments, facilitating collective spin switching behavior under magnetic fields. Our research reveals intrinsic noncollinear magnetism at the monolayer limit with atomic-scale resolution, paving the way for exploring spin phenomena.


论文链接:Spin-resolved imaging of atomic-scale helimagnetism in mono- and bilayer NiI2, Mao-Peng Miao, Nanshu Liu, Wen-Hao Zhang, Jian-Wang Zhou, Dao-Bo Wang, Cong Wang, Wei Ji, and Ying-Shuang Fu, PNAS 122 (39), e2422868122 (2025)


相关推荐
读取内容中,请等待...