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Two-dimensional CoSe structures: Intrinsic magnetism, strain-tunable anisotropic valleys, magnetic Weyl point, and antiferromagnetic metal state

机译:二维皮带结构:本征磁,应变可调各向异性谷,磁性Weyl点和反铁磁金属状态

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摘要

The interplay between magnetism, band topology, and electronic correlation in low dimensions has been a fascinating subject of research. Here, we propose two-dimensional (2D) material systems which demonstrate such an interesting interplay. Based on first-principles calculations and structural search algorithms, we identify three lowest energy 2D CoSe structures, termed as the α-, β-, and γ-CoSe. We show that α- and β-CoSe are two rare examples of 2D antiferromagnetic metals, which are related to their Fermi surfaces nesting features, and meanwhile, γ-CoSe is a ferromagnetic metal. They possess a range of interesting physical properties, including anisotropic valleys connected by crystalline symmetries, strain-tunable valley polarization, strain-induced metal-semiconductor and/or magnetic phase transitions, as well as topological band features such as the magnetic Weyl point and the magnetic Weyl loop. Remarkably, all the topological features here are robust against spin-orbit coupling. Some experimental aspects of our predictions have been discussed.
机译:磁性,带拓扑和低维度的电子相关之间的相互作用是研究的迷人主题。在这里,我们提出了二维(2D)材料系统,其展示了这种有趣的相互作用。基于第一原理计算和结构搜索算法,我们鉴定了三种最低能量2D激光结构,称为α-,β-和γ-XE。我们表明α-和β-X-COSE是2D反铁磁性金属的两个罕见的例子,其与其FERMI表面嵌套特征有关,同时,γ-卷曲是铁磁性金属。它们具有一系列有趣的物理性质,包括通过晶体对称,应变可调谷极化,应变诱导的金属半导体和/或磁性相变,以及诸如磁性Weyl点等拓扑带的各向异性谷。磁性Weyl环。值得注意的是,这里的所有拓扑功能都是坚固的旋转轨道耦合。已经讨论了我们预测的一些实验方面。

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    《Physical review.B.Condensed matter and materials physics》 |2020年第22期|224422.1-224422.9|共9页
  • 作者单位

    Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore;

    Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore;

    Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore;

    Theoretische Chemie Technische Universitaet Dresden Dresden 01062 Germany Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore;

    Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore Sichuan Co-Innovation Center for New Energetic Materials Southwest University of Science and Technology Mianyang 621010 China;

    Zhejiang Province Key Laboratory of Quantum Technology and Device Department of Physics Zhejiang University Hangzhou 310027 China;

    Key Laboratory of Micro-nano Measurement-Manipulation and Physics (Ministry of Education) School of Physics Beihang University Beijing 100191 China Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore;

    Research Laboratory for Quantum Materials Singapore University of Technology and Design Singapore 487372 Singapore Center for Quantum Transport and Thermal Energy Science School of Physics and Technology Nanjing Normal University Nanjing 210023 China;

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