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2D ferromagnetism at finite temperatures under quantum scrutiny

机译:Quantum Scrutiny下有限温度的2D铁磁性

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摘要

Recent years have seen a tremendous rise of two-dimensional (2D) magnetic materials, several of which were verified experimentally. However, most of the theoretical predictions to date rely on ab initio methods, at zero temperature and fluctuation-free, while one certainly expects detrimental quantum fluctuations at finite temperatures. Here, we present the solution of the quantum Heisenberg model for honeycomb/hexagonal lattices with anisotropic exchange interaction up to third nearest neighbors and in an applied field in arbitrary direction, which answers the question whether long-range magnetization can indeed survive in the ultrathin limit of materials, up to which temperature, and what the characteristic excitation (magnon) frequencies are, all essential to envisaged applications of magnetic 2D materials. We find that long-range magnetic order persists at finite temperature for materials with overall easy-axis anisotropy. We validate the calculations on the examples of monolayers CrI_3, CrBr_3, and MnSe_2. Moreover, we provide an easy-to-use tool to calculate Curie temperatures of new 2D computational materials.
机译:近年来已经看过二维(2D)磁性材料的巨大崛起,其中几个是通过实验验证的。然而,大多数理论上的预测迄今依赖于AB Initio方法,在零温度下,无波动,而一个人肯定期望有限温度的有害量子波动。在这里,我们介绍了蜂窝/六边形格子的Quantum Heisenberg模型,通过各向异性交换互动,直到第三邻居以及任意方向的施加场,这回答了远程磁化能否在超薄限制中确实存活的问题材料,高温,以及特征激发(MAGNON)频率的频率,对于磁性2D材料的应用是至关重要的。我们发现远程磁场持续有限温度,用于整体易轴各向异性的材料。我们验证了单层CRI_3,CRBR_3和MNSE_2的单层示例的计算。此外,我们提供易于使用的工具来计算新的2D计算材料的居里温度。

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  • 来源
    《Applied Physics Letters》 |2020年第5期|052401.1-052401.6|共6页
  • 作者单位

    Department of Physics University of Antwerp Groenenborgerlaan 171 B-2020 Antwerp Belgium IMEC Kapeldreef 75 B-3001 Leuven Belgium;

    Department of Physics University of Antwerp Groenenborgerlaan 171 B-2020 Antwerp Belgium NANOIab Center of Excellence University of Antwerp Croenenborgerlaan 171 B-2020 Antwerp Belgium;

    Department of Physics University of Antwerp Groenenborgerlaan 171 B-2020 Antwerp Belgium IMEC Kapeldreef 75 B-3001 Leuven Belgium ESAT KU Leuven Kasteelpark Arenberg 10 B-3001 Leuven Belgium;

    Department of Physics University of Antwerp Groenenborgerlaan 171 B-2020 Antwerp Belgium NANOIab Center of Excellence University of Antwerp Croenenborgerlaan 171 B-2020 Antwerp Belgium;

    Department of Physics University of Antwerp Groenenborgerlaan 171 B-2020 Antwerp Belgium IMEC Kapeldreef 75 B-3001 Leuven Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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