Spin polarization of the quantum spin Hall edge states

被引:0
|
作者
Christoph Brüne
Andreas Roth
Hartmut Buhmann
Ewelina M. Hankiewicz
Laurens W. Molenkamp
Joseph Maciejko
Xiao-Liang Qi
Shou-Cheng Zhang
机构
[1] Physikalisches Institut (EP3) and Röntgen Center for Complex Material Systems,Department of Physics
[2] Universität Würzburg,undefined
[3] Institut für Theoretische und Astrophysik and Röntgen Center for Complex Material Systems,undefined
[4] Universität Würzburg,undefined
[5] Stanford University,undefined
[6] Stanford Institute for Materials and Energy Sciences,undefined
[7] SLAC National Accelerator Laboratory,undefined
[8] Microsoft Research Station Q,undefined
[9] Elings Hall,undefined
[10] University of California,undefined
关键词
D O I
10.1038/nphys2322
中图分类号
学科分类号
摘要
The prediction and experimental verification of the quantum spin Hall state marked the discovery of a new state of matter now known as topological insulators. Two-dimensional topological insulators exhibit the quantum spin-Hall effect, characterized by gapless spin-polarized counter-propagating edge channels. Whereas the helical character of these edge channels is now well established, experimental confirmation that the transport in the edge channels is spin polarized is still outstanding. We report experiments on nanostructures fabricated from HgTe quantum wells with an inverted band structure, in which a split gate technique allows us to combine both quantum spin Hall and metallic spin Hall transport in a single device. In these devices, the quantum spin Hall effect can be used as a spin current injector and detector for the metallic spin Hall effect, and vice versa, allowing for an all-electrical detection of spin polarization.
引用
收藏
页码:485 / 490
页数:5
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