Spin transport study in a Rashba spin-orbit coupling system

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作者
Fuhong Mei
Shan Zhang
Ning Tang
Junxi Duan
Fujun Xu
Yonghai Chen
Weikun Ge
Bo Shen
机构
[1] State Key Laboratory of Artificial Microstructure and Mesoscopic Physics,Department of Physics
[2] School of Physics,undefined
[3] Peking University,undefined
[4] Collaborative Innovation Center of Quantum Matter.,undefined
[5] Laboratory of Semiconductor Materials Science,undefined
[6] Institute of Semiconductors,undefined
[7] Chinese Academy of Sciences(CAS),undefined
[8] Tsinghua University,undefined
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摘要
One of the most important topics in spintronics is spin transport. In this work, spin transport properties of two-dimensional electron gas in AlxGa1-xN/GaN heterostructure were studied by helicity-dependent photocurrent measurements at room temperature. Spin-related photocurrent was detected under normal incidence of a circularly polarized laser with a Gaussian distribution. On one hand, spin polarized electrons excited by the laser generate a diffusive spin polarization current, which leads to a vortex charge current as a result of anomalous circular photogalvanic effect. On the other hand, photo-induced spin polarized electrons driven by a longitudinal electric field give rise to a transverse current via anomalous Hall Effect. Both of these effects originated from the Rashba spin-orbit coupling. By analyzing spin-related photocurrent varied with laser position, the contributions of the two effects were differentiated and the ratio of the spin diffusion coefficient to photo-induced anomalous spin Hall mobility Ds/μs = 0.08 V was extracted at room temperature.
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