Strain-tunable skyrmions in two-dimensional monolayer Janus magnets

杰纳斯 点反射 空中骑兵 单层 磁铁 材料科学 铁磁性 居里温度 凝聚态物理 磁场 纳米技术 物理 量子力学
作者
yuetong Han,Wei-xiao Ji,Pei-ji Wang,Ping Li,Changwen Zhang
出处
期刊:Nanoscale [Royal Society of Chemistry]
卷期号:15 (14): 6830-6837 被引量:16
标识
DOI:10.1039/d2nr06870b
摘要

The Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosymmetric systems, plays an important role in the formation of exotic chiral magnetic states. However, the absence of the DMI occurs in most two-dimensional (2D) magnetic materials due to their intrinsic inversion symmetry. Here, by using first-principles calculations, we demonstrate that a significant DMI can be obtained in a series of Janus monolayers of dichalcogenides XSeTe (X = Nb, Re) in which the difference between Se and Te on the opposite sides of X breaks the inversion symmetry. Remarkably, the DMI amplitudes of NbSeTe (1.78 meV) and ReSeTe (4.82 meV) are larger than the experimental value of Co/graphene (0.16 meV), and NbSeTe and ReSeTe monolayers have a high Curie temperature of 1023 K and 689 K, respectively. Through the micromagnetic simulation of XSeTe (X= Nb, Re) simulations, we also find that the ReSeTe monolayer can performance for skyrmion states by applying an external magnetic field, and importantly, the skyrmion states can be regulated and controlled under external strain. The findings pave the way for device concepts using chiral magnetic structures in specially designed 2D ferromagnetic materials.
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