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Manipulating light polarizations with a hyperbolic metamaterial waveguide

机译:用双曲线超材料波导操纵光的偏振

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In this Letter we demonstrate that a hyperbolic metamaterial (HMM) waveguide array exhibits a giant modal bire-fringence between the TE and TM modes by utilization of a rectangular waveguide cross section. We further reveal that the designed polarization manipulation device using such a HMM waveguide array with a subwavelength thickness presents the ability to function as a polarizer or quarter- or half-wave plate that enables transmission only for electromagnetic wave (EW) that is polarized at a specific direction, or converting linearly polarized EW to circularly and elliptically polarized EW or rotating linearly polarized EW with 90 degrees at terahertz (THz) frequencies. A giant modal birefringence between the TE and TM modes from 0.8 to 2 between 2 and 4.8 THz is achievable, which is dozens of times higher than conventional quartz birefringent crystals for THz waves. This polarization manipulation device has the performance merits including high transmission efficiency, ultra-compactness, and tunable birefringence, offering a promising approach to manipulating the polarization states of EW. (C) 2015 Optical Society of America
机译:在这封信中,我们证明了利用矩形波导截面,双曲超材料(HMM)波导阵列在TE和TM模式之间展现出巨大的模态双折射。我们进一步揭示,使用具有亚波长厚度的此类HMM波导阵列设计的偏振操纵装置呈现出起偏振器或四分之一波片或半波片的功能,从而仅能传输在特定方向,或将线性极化EW转换为圆形和椭圆极化EW或以太赫兹(THz)频率旋转90度的线性极化EW。可以实现TE和TM模式之间介于2和4.8 THz之间的0.8到2的巨大模态双折射,这比常规的THz波石英双折射晶体高数十倍。该偏振操纵装置具有包括高传输效率,超紧凑性和可调双折射的性能优点,为操纵EW的偏振态提供了一种有希望的方法。 (C)2015年美国眼镜学会

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