多铁性
铁电性
磁性
凝聚态物理
极化密度
磁电效应
材料科学
反铁磁性
单层
电场
相变
实现(概率)
铁磁性
反铁电性
磁场
物理
纳米技术
光电子学
磁化
电介质
量子力学
统计
数学
作者
Chenqiang Hua,Hua Bai,Yi Zheng,Zhu‐An Xu,Shengyuan A. Yang,Yunhao Lu,Su‐Huai Wei
标识
DOI:10.1088/0256-307x/38/7/077501
摘要
The coupling between electric ordering and magnetic ordering in two-dimensional (2D) materials is important for both fundamental research of 2D multiferroics and future development of magnetism-based information storage and operation. Here, we introduce a scheme for realizing a magnetic phase transition through the transition of electric ordering. We take CuMoP 2 S 6 monolayer as an example, which is a member of the large 2D transition-metal chalcogen-phosphates family. Based on first-principles calculations, we find that it is a multiferroic with unprecedented characters, namely, it exhibits two different phases: an antiferroelectric-antiferromagnetic phase and a ferroelectric-ferromagnetic phase, in which the electric and magnetic orderings are strongly coupled. Importantly, the electric polarization is out-of-plane, so the magnetism can be readily switched by using the gate electric field. Our finding reveals a series of 2D multiferroics with special magnetoelectric coupling, which hold great promise for experimental realization and practical applications.
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