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Bulk properties of the van der Waals hard ferromagnet VI3

机译:van der wa virs ferromagnet vi3的批量属性

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摘要

We present comprehensive measurements of the structural, magnetic, and electronic properties of layered van der Waals ferromagnet VI3 down to low temperatures. Despite belonging to a well-studied family of transitionmetal trihalides, this material has received very little attention. We outline, from high-resolution powder x-ray diffraction measurements, a corrected room-temperature crystal structure to that previously proposed and uncover a structural transition at 79 K, also seen in the heat capacity. Magnetization measurements confirm VI(3 )to be a hard ferromagnet (9.1 kOe coercive field at 2 K) with a high degree of anisotropy, and the pressure dependence of the magnetic properties provide evidence for the two-dimensional nature of the magnetic order. Optical and electrical transport measurements show this material to be an insulator with an optical band gap of 0.67 eV-the previous theoretical predictions of d-band metallicity then lead us to believe VI3 to be a correlated Mott insulator. Our latest band-structure calculations support this picture and show good agreement with the experimental data. We suggest VI3 to host great potential in the thriving field of low-dimensional magnetism and functional materials, together with opportunities to study and make use of low-dimensional Mott physics.
机译:我们将分层Van der Waals Ferromagnet VI3的结构,磁性和电子特性的全面测量到低温。尽管属于一家学习的过渡型Trihalides家族,但这种材料非常关注。从高分辨率粉末X射线衍射测量开始,校正室温晶体结构概述,以前提出并在79 k下揭示的结构过渡,也以热量观察。磁化测量确认Vi(3)是具有高各向异性的硬铁磁性(9.1只koe矫顽磁场),磁性特性的压力依赖性为磁秩序的二维性质提供了证据。光学和电气传输测量显示这种材料是具有0.67eV的光带隙的绝缘体 - P-BAND金属的先前理论预测,然后导致我们相信VI3是相关的薄荷绝缘体。我们最新的乐队结构计算支持此图片,并与实验数据显示良好的一致性。我们建议VI3在低维磁性和功能材料的蓬勃发展领域举办巨大潜力,以及机会研究和利用低维Mott物理学。

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