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Research on the spin Hall effect of light for nonlinear multilayer dielectrics and its bistable and nonreciprocal features

机译:非线性多层电介质光旋转霍尔效应及其双稳态和非渗透特征的研究

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摘要

In this paper, by utilizing the transfer matrix method, a structure composed of one-dimensional (1D) periodic multilayer dielectrics, InSb, and nonlinear material is proposed to investigate the behavior of the spin Hall effect of light (SHEL) and its nonreciprocity and bistable features. The results demonstrate that, as the light intensity increases, the reflection coefficients under both TM and TE waves have a bistable phenomenon, and the points of both horizontal and vertical displacements are consistent with the regions where reflection is close to 0. Furthermore, to make our study complete, the thicknesses of the nonlinear and InSb layers are adjusted to study the effects on the performance of SHEL, and it can be found that, with the escalation of the thicknesses of the nonlinear and InSb layers, all the points of displacements are shifting to the direction of the angle. Besides, all parameters demonstrate the phenomenon of nonreciprocity. This research supplies meaningful guidelines for some optical instruments, such as light intensity sensors.
机译:本文利用传输矩阵方法,提出了一种由一维周期性多层介质InSb和非线性材料组成的结构,以研究光的自旋霍尔效应(SHEL)的行为及其非互易性和双稳态特性。结果表明,随着光强的增加,TM波和TE波下的反射系数都存在双稳态现象,水平和垂直位移点与反射接近0的区域一致。此外,为了完成我们的研究,我们调整了非线性层和InSb层的厚度,以研究对SHEL性能的影响,可以发现,随着非线性层和InSb层厚度的增加,所有位移点都向角度方向移动。此外,所有参数都表明了非互易现象。这项研究为一些光学仪器提供了有意义的指导,例如光强传感器。

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