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Effects of Spatial Dispersion at Intraband Transitions in Multiple Quantum Well Structures

机译:空间色散对多量子阱结构内带内跃迁的影响

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Effects of spatial dispersion in reflection of light from multiple quantum well structures of different symmetry have been investigated. It has been shown that with inclined incidence of linearly polarized light on the system of symmetry C_(∞v), the reflected wave starts to manifest the circular polarization. Upon the incidence of s(p)-polarized light on the structure of the D_(2d) symmetry, the reflected wave starts to manifest p(s) component, while in the case of the point symmetry C_(2v), this phenomenon also occurs for the normal incidence. The magneto-spatial dispersion in the magnetic field lying in the structure plane leads to the same conversion of polarization. Dependences of the polarization-sensitive reflection coefficients on the incidence angle are calculated. The microscopically gyrotropic contributions to the dielectric permittivity of the multiple quantum well structures are calculated for the intraband frequency range. Evaluations show that the effects of spatial dispersion in such systems can be observed experimentally.
机译:已经研究了空间色散对来自具有不同对称性的多个量子阱结构的光的反射的影响。结果表明,随着线性偏振光在对称系统C_(∞v)上的倾斜入射,反射波开始表现出圆偏振。当s(p)偏振光入射到D_(2d)对称的结构上时,反射波开始表现出p(s)分量,而在点对称C_(2v)的情况下,这种现象也发生为正常发病。位于结构平面中的磁场中的磁空间分散会导致相同的极化转换。计算偏振敏感反射系数对入射角的依赖性。对于带内频率范围,计算了对多个量子阱结构的介电常数的微观回旋贡献。评估表明,可以通过实验观察这种系统中空间分散的影响。

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