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SrMnBi₂ 中各向异性狄拉克费米子的谷极化层间传导

Valley-polarized interlayer conduction of anisotropic Dirac fermions in SrMnBi2.

作者信息

Jo Y J, Park Joonbum, Lee G, Eom Man Jin, Choi E S, Shim Ji Hoon, Kang W, Kim Jun Sung

机构信息

Department of Physics, Kyungpook National University, Daegu 702-710, Korea.

Department of Physics, Pohang University of Science and Technology, Pohang 790-784, Korea.

出版信息

Phys Rev Lett. 2014 Oct 10;113(15):156602. doi: 10.1103/PhysRevLett.113.156602. Epub 2014 Oct 6.

Abstract

We report the valley-selective interlayer conduction of SrMnBi(2) under in-plane magnetic fields. The c-axis resistivity of SrMnBi(2) shows clear angular magnetoresistance oscillations indicating coherent interlayer conduction. Strong fourfold variation of the coherent peak in the c-axis resistivity reveals that the contribution of each Dirac valley is significantly modulated by the in-plane field orientation. This originates from anisotropic Dirac Fermi surfaces with strong disparity in the momentum-dependent interlayer coupling. Furthermore, we found a signature of broken valley symmetry at high magnetic fields. These findings demonstrate that a quasi-two-dimensional anisotropic Dirac system can host a valley-polarized interlayer current through magnetic valley control.

摘要

我们报道了在面内磁场下SrMnBi₂的谷选择性层间传导。SrMnBi₂的c轴电阻率显示出清晰的角磁阻振荡,表明存在相干层间传导。c轴电阻率中相干峰的强烈四重变化表明,每个狄拉克谷的贡献受到面内磁场取向的显著调制。这源于具有动量依赖层间耦合强烈差异的各向异性狄拉克费米面。此外,我们在高磁场下发现了谷对称性破缺的迹象。这些发现表明,准二维各向异性狄拉克系统可以通过磁谷控制实现谷极化层间电流。

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