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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Dynamics of Electronic States and Magnetoabsorption in 3D Topological Insulators in a Quantizing Magnetic Field
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Dynamics of Electronic States and Magnetoabsorption in 3D Topological Insulators in a Quantizing Magnetic Field

机译:量化磁场中3D拓扑绝缘子中电子国家和磁化的动态

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Quantum states have been calculated analytically; the dynamics of a wave packet in a magnetic field has been investigated, and the optical absorption coefficient has been calculated for surface states in 3D topological insulators of the Bi2Te3 family. We have detected a qualitative effect of the hexagonal warping of the spectrum on the structure of wavefunctions at the Landau levels, its manifestation in the features of the wave packet dynamics in a quantizing magnetic field, as well as in the frequency dependence of the optical absorption coefficient, in which new peaks that are absent in the isotropic model of the spectrum appear depending on the polarization of the incident wave. The effects considered here can be manifested in the optical and transport experiments with topological insulators, which makes it possible to determine the parameters of their band structure.
机译:量子态已经分析计算; 研究了磁场中的波分组的动态,并且已经计算了Bi2te3家族的3D拓扑绝缘体中的表面状态的光学吸收系数。 我们已经检测到六边形翘曲对LANDAU水平的波力结构结构的定性效果,其在量化磁场中波分组动力学的特征中的表现形式,以及光学吸收的频率依赖性 系数,其中频谱各向同性模型中不存在的新峰,这取决于入射波的极化。 这里考虑的效果可以表现在具有拓扑绝缘体的光学和运输实验中,这使得可以确定其带结构的参数。

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