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首页> 外文期刊>JETP Letters >Interface Contributions to the Spin–Orbit Interaction Parameters of Electrons at the (001) GaAs/AlGaAs Interface
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Interface Contributions to the Spin–Orbit Interaction Parameters of Electrons at the (001) GaAs/AlGaAs Interface

机译:(001)GaAs / AlGaAs界面上电子对自旋轨道相互作用参数的界面贡献

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摘要

One-body mechanisms of spin splitting of the energy spectrum of 2D electrons in a one-side doped (001) GaAs/Al_xGa_(1–x)As quantum well have been studied theoretically and experimentally. The interfacial spin splitting has been shown to compensate (enhance) considerably the contribution of the bulk Dresselhaus (Bychkov–Rashba) mechanism. The theoretical approach is based on the solution of the effective mass equation in a quasi-triangular well supplemented by a new boundary condition at a high and atomically sharp heterobarrier. The model takes into account the spin–orbit interaction of electrons with both bulk and interfacial crystal potential having C_(2v) symmetry, as well as the lack of inversion symmetry and nonparabolicity of the conduction band in GaAs. The effective 2D spin Hamiltonian including both bulk and interface contributions to the Dresselhaus (α_(BIA)) and Rashba (α_(SIA)) constants has been derived. The analytical relation between these constants and the components of the anisotropic nonlinear g-factor tensor in an oblique quantizing magnetic field has been found. The experimental approach is based, on one hand, on the detection of electron spin resonance in the microwave range and, on the other hand, on photoluminescence measurements of the nonparabolicity parameter. The interface contributions to α_(BIA) and α_(SIA) have been found from comparison with the theory.
机译:从理论和实验上研究了单侧掺杂(001)GaAs / Al_xGa_(1-x)As量子阱中二维电子能谱的自旋分裂的单体机理。界面自旋分裂已被证明可以补偿(增强)大量的Dresselhaus(Bychkov-Rashba)机制的贡献。该理论方法是基于拟三角井中有效质量方程的解,并在高且原子尖锐的异质势垒处补充了新的边界条件。该模型考虑了具有C_(2v)对称性且具有体晶和界面晶体电势的电子的自旋轨道相互作用,以及在GaAs中缺乏反演对称性和导带的非抛物线性。推导了有效的二维自旋哈密顿量,包括对Dresselhaus(α_(BIA))和Rashba(α_(SIA))常数的体积和界面贡献。发现了这些常数与倾斜量化磁场中各向异性非线性g因子张量的分量之间的解析关系。实验方法一方面基于微波范围内电子自旋共振的检测,另一方面基于非抛物线参数的光致发光测量。通过与该理论的比较,发现了对α_(BIA)和α_(SIA)的界面贡献。

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