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Photonic spin Hall effect in PT symmetric metamaterials

机译:PT对称超材料中的光子自旋霍尔效应

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We proposed and demonstrated that PT symmetric metamaterials could be used to achieve enhanced spin Hall effect (SHE) of light. We find that when laser mode is excited in PT symmetric system, the enhanced SHE could be obtained in both transmitted and reflected beams. In addition, as exceptional points (EPs) of PT symmetric system can happen for both p- and s-polarizations, the enhanced SHE of reflected light can function for both horizontally and vertically polarized incident beams. Particularly, these EPs can lead to unidirectional reflectionlessness, asymmetric SHE with maximum contrast ratio of 48 is obtained by launching light beams near EPs. Our work opens up a new path to obtain enhanced transverse displacement for both reflected and transmitted light and enables more opportunities in manipulating photonic SHE.
机译:我们提出并证明了PT对称超材料可以用于实现增强的光自旋霍尔效应(SHE)。我们发现当在PT对称系统中激发激光模式时,可以在透射和反射光束中获得增强的SHE。此外,由于PT对称系统的奇异点(EP)可能同时发生p和s偏振,因此反射光的增强SHE可以同时作用于水平和垂直偏振入射光束。特别地,这些EP会导致单向无反射,通过在EP附近发射光束获得具有最大对比度的48的不对称SHE。我们的工作开辟了一条新途径,以提高反射和透射光的横向位移,并为操纵光子SHE提供了更多机会。

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