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Design of polarization splitting devices with ideal transmission and anisotropy considerations

机译:具有理想传输和各向异性注意事项的偏振分裂装置的设计

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In this paper, we introduce the generalized design of nonmagnetic homogeneous polarization splitting devices (polarization deflector/lateral shifter) based on linear area-preserving transformations for an arbitrary incident angle. Also, by employing the Brewster angle condition, we derive a quadratic equation for principal values of the permittivity tensor that leads to the reflectionless splitting of two orthogonal polarizations for a normally impinging wave. The minimum in-plane anisotropy condition is then derived. The Brewster angle method offers significantly less anisotropy compared with the transformation optical design for larger deflection angles/lateral shifts in the normal incidence case. Finally, we show that, by using a uniaxial material (zero in-plane anisotropy), we can achieve similar functionality in the case of an obliquely incident wave. The proposed devices can separate the polarizations of the incident wave by creating a desired angle or lateral shift between TE and TM polarizations. The functionality of the proposed designs is confirmed by the commercial finite-element-based software COMSOL Multiphysics. (C) 2018 Optical Society of America.
机译:在本文中,我们基于用于任意入射角的线性区域保存变换来介绍非磁性均匀偏振分离装置(偏振偏转器/横向移位器)的广义设计。而且,通过采用Brewster角度条件,我们推导出介电常数张量的主要值的二次方程,其导致用于常瞬间撞击波的两个正交偏振的反射分裂。然后导出最小面内各向异性条件。与正常入射壳中的较大偏转角/横向移位的变换光学设计相比,Brewster角度法提供了显着更少的各向异性。最后,我们表明,通过使用单轴材料(零面内各向异性),我们可以在倾斜入射波的情况下实现类似的功能。所提出的装置可以通过在TE和TM偏振之间产生所需的角度或横向偏移来分离入射波的偏振。所提出的设计的功能由基于商业有限元的软件COMSOL多发性证实。 (c)2018年光学学会。

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