Quantum kinetic equation for spin relaxation and spin Hall effect in GaAs

被引:0
|
作者
H. C. Lee
C.-Y. Mou
机构
[1] Institute of Physics,Department of Physics
[2] National Chiao Tung University,Physics Division
[3] National Tsing Hua University,undefined
[4] National Center for Theoretical Sciences,undefined
来源
The European Physical Journal B | 2010年 / 73卷
关键词
GaAs; Carrier Density; Quantum Well; Spin Relaxation; Spin Current;
D O I
暂无
中图分类号
学科分类号
摘要
We present a general quantum kinetic theory of spin transport based on the Kadanoff- Baym equation (KBE), which we use to study dynamical spin processes in semiconductors right down to femtosecond and nanometer scales. In our application of KBE we describe the evolution of the non-equilibrium 2×2 matrix Green function for carrier spin, averaged over the thermal bath. Spin relaxation effects are treated within the Kadanoff-Baym Ansatz (KBA), while carrier interactions are treated within the random-phase model of screening. We track the detailed oscillation of the spin- polarized carrier state within the coherence time. Our general kinetic approach also allows description of the spin Hall effect when both impurity scattering and the Fröhlich interaction are included in the KBE collision term. We find that the level of spin current is very sensitive to the density of impurities, and that the Fröhlich interaction can generate a considerable spin current. Significantly, the Fröhlich term leads to a unique type of oscillatory behaviour in the spin current that is independent of impurity scattering effects.
引用
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页码:229 / 242
页数:13
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