铁磁性
磁性
凝聚态物理
各向异性
磁各向异性
海森堡模型
材料科学
蒙特卡罗方法
统计物理学
物理
磁场
磁化
量子力学
数学
统计
作者
Daniele Torelli,Kristian S. Thygesen,Thomas Olsen
出处
期刊:2D materials
[IOP Publishing]
日期:2019-06-25
卷期号:6 (4): 045018-045018
被引量:106
标识
DOI:10.1088/2053-1583/ab2c43
摘要
The recent observation of ferromagnetic order in two-dimensional (2D) materials has initiated a booming interest in the subject of 2D magnetism. In contrast to bulk materials, 2D materials can only exhibit magnetic order in the presence of magnetic anisotropy. In the present work we have used the computational 2D materials database (C2DB) to search for new ferromagnetic 2D materials using the spinwave gap as a simple descriptor that accounts for the role of magnetic anisotropy. In addition to known compounds we find 17 novel insulating materials that exhibit magnetic order at finite temperatures. For these we evaluate the critical temperatures from classical Monte Carlo simulations of a Heisenberg model with exchange and anisotropy parameters obtained from first principles. Starting from 150 stable ferromagnetic 2D materials we find ten candidates that are predicted to have critical temperatures exceeding that of CrI3. We also study the effect of Hubbard corrections in the framework of DFT + U and find that the value of U can have a crucial influence on the prediction of magnetic properties. Our work provides new insight into 2D magnetism and identifies a new set of promising monolayers for experimental investigation.
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