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首页> 外文期刊>Physical review, B >Stochastic Faraday rotation induced by the electric current fluctuations in nanosystems
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Stochastic Faraday rotation induced by the electric current fluctuations in nanosystems

机译:由纳米系统电流波动引起的随机法拉第旋转

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摘要

We demonstrate theoretically that in gyrotropic semiconductors and semiconductor nanosystems the Brownian motion of electrons results in temporal fluctuations of the polarization plane of light passing through or reflected from the structure, i.e., in stochastic Faraday or Kerr rotation effects. The theory of the effects is developed for a number of prominent gyrotropic systems such as bulk tellurium, ensembles of chiral carbon nanotubes, and GaAs-based quantum wells of different crystallographic orientations. We show that the power spectrum of these fluctuations in thermal equilibrium is proportional to the ac conductivity of the system. We evaluate contributions resulting from the fluctuations of the electric current, as well as of spin, valley polarization, and the spin current to the noise of the Faraday/Kerr rotation. Hence all-optical measurements of the Faraday and Kerr rotation noise provide an access to the transport properties of the semiconductor systems.
机译:从理论上,我们在旋流半导体和半导体纳米系统中展示了电子的棕色运动导致通过结构的光的偏振平面的时间波动,即,在随机法拉划或克尔旋转效应中。 该效果理论是为许多突出的旋流系统而开发的,例如散葡碲,手性碳纳米管的整体和基于GaAs的量子阱的不同晶体取向。 我们表明,热平衡中这些波动的功率谱与系统的交流电导率成比例。 我们评估由电流波动的贡献,以及旋转,谷极化以及旋转电流与法拉第/克尔旋转的噪声。 因此,法拉第和克尔旋转噪声的全光学测量提供了对半导体系统的传输特性的访问。

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