杰纳斯
接口(物质)
单层
凝聚态物理
铁磁性
电场
材料科学
领域(数学)
物理
纳米技术
量子力学
毛细管数
数学
复合材料
毛细管作用
纯数学
出处
期刊:Physica Scripta
[IOP Publishing]
日期:2024-03-07
卷期号:99 (4): 045516-045516
标识
DOI:10.1088/1402-4896/ad314e
摘要
Abstract Regulating spin-related electronic structures of two dimensional (2D) materials by an external electric field plays a substantial role in achieving spintronic and multistate information storage. However, electric-field-dependent ferromagnetic behavior at atomic-thick 2D materials is very difficult to be realized due to their intrinsic inversion symmetry, in which the symmetric spatial distribution of charge density makes it become insensitive to spontaneous polarization from external electric field. Herein, a new-type Janus MnReX 3 (X = Se, S) monolayer with noncentrosymmetric configuration in which their orbital hybridization at internal interface can be engineered by rearranging the spatial symmetry of out-of-plane charge density. As a result, the spin exchange interaction among magnetic sites can be regulated by the electric-field-driven charge density redistribution, leading to a controllable ferromagnetic behavior at room temperature. Our results not only suggest a promising strategy to regulate the ferromagnetic response by reducing the crystal symmetry, but also provide a new insight into designing 2D magnetic materials.
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