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Subwavelength Broadband Photonic Spin Hall Devices via Optical Slot Antennas

机译:通过光学槽天线副长宽带光子旋转霍尔设备

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摘要

The photonic spin Hall effect, wherein left- and right-handed circularly polarized components can be separated during transportation after reflection or refraction by an optical interface through spin-orbit interaction, has gained increasing attention from the scientific and technological fields. Here, broadband subwavelength photonic spin Hall devices (PSHDs) are demonstrated on the basis of L-shaped optical slot antennas. A basic PSHD comprises two L-shaped slot antennas with a footprint size of 300 nm x 700 nm. The angle between the two radiation directions of the incident lights with different spins varies from 56 degrees to 31 degrees in the wavelength range of 750 to 850 nm. An array of antenna pairs is used to control radiation directions and improve the performance of the PSHDs. The proposed PSHDs are highly useful in integrated nanophotonic devices given their ultrasmall size, broadband response, and flexible design method.
机译:光子旋转霍尔效应,其中在通过旋转轨道相互作用的光学界面反射或折射后,可以在运输过程中分离左右手圆偏振部件,从而从科技领域获得了越来越多的关注。这里,基于L形光学槽天线对宽带子波长光子旋转霍尔器件(PSHDS)进行说明。基本PSHD包括两个L形槽天线,其占地面积为300nm x 700nm。具有不同旋转的入射光的两个辐射方向之间的角度在750至850nm的波长范围内的56度到31度。一系列天线对来控制辐射方向并提高PSHD的性能。所提出的PSHDS在鉴于其超大尺寸,宽带响应和柔性设计方法的集成纳米光电装置中非常有用。

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