Investigation of Magnetic Quantum and Resonance Effects in Semiconductor Systems by Contactless Magneto-Optical and Microwave Methods

A.A. Komilovich, E. I. Uvarov
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Abstract

The investigation of the quantum effects in semiconductors by the contact less magneto-optical and microwave methods are presented. Studies of the dependence of the optical and microwave Shubnikov-de Haas effect (SdH), cyclotron resonance, nonlinear spin resonance on magnetic field have been carried out to determine the transport and energetic parameters in semiconductors such InSb, CdxHg1-xTe and two-dimensional systems (2DS) such GaAs/AlxGa1-xAs in the observation of this effect in the transmission and reflectivity of the probing radiation. The nonlinear spin resonance raised in n-InSb due to stimulated combinational light scattering method (LSCS) with the signal amplification is considered.
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用非接触磁光和微波方法研究半导体系统中的磁量子和共振效应
介绍了用无接触磁光和微波方法研究半导体中的量子效应。为了确定InSb、CdxHg1-xTe等半导体和GaAs/AlxGa1-xAs等二维体系(2DS)中的输运和能量参数,研究了光学和微波舒布尼可夫-德哈斯效应(SdH)、旋转共振、非线性自旋共振对磁场的依赖关系,观察了探测辐射的透射和反射率效应。考虑了受激组合光散射法(LSCS)在信号放大的情况下引起的n-InSb的非线性自旋共振。
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