多铁性
磁电效应
凝聚态物理
物理
涡流
空中骑兵
极化密度
极化(电化学)
格子(音乐)
磁性结构
自旋(空气动力学)
极地的
磁场
联轴节(管道)
自旋结构
反铁磁性
磁畴
电场
领域(数学分析)
铁电性
作者
Weiyi Pan,Zefeng Chen,Tianxing Jiang,H WANG,Dezhao Wu,Weiqin Zhu,Zhiming Xu,Lianchuang Li,J. H. Feng,Tong Zhang,Bing-Lin Gu,Wenhui Duan,Changsong Xu
标识
DOI:10.1073/pnas.2530708123
摘要
Type-II multiferroics, where spin order induces ferroelectricity, exhibit strong magnetoelectric coupling. However, for the typical 2D type-II multiferroic NiI 2 , the underlying magnetoelectric mechanism remains unclear. Here, applying generalized spin-current model, together with first-principles calculations and a tight-binding approach, we build a comprehensive magnetoelectric model for spin-induced polarization. Such model reveals that third-nearest-neighbor spin pairs provide an unexpectedly strong contribution to the electric polarization, which rivals that of the first-nearest neighbors. Adopting such model, both experimental-detectable bound charge induced by spin-induced polarization at the spiral domain boundary, as well as polar vortex lattice induced by magnetic skyrmion lattice under moderate magnetic field, are predicted. Furthermore, by analyzing the orbital-resolved contributions to polarization, our tight-binding model reveals that the long-range magnetoelectric coupling is enabled by the strong e g - p hopping of NiI 2 . These findings can guide the identification and design of strongly magnetoelectric multiferroics.
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