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Compact generation of arbitrarily accelerating double caustic beams with orthogonal polarizations using a dielectric metasurface

机译:使用电介质元接口紧凑地产生具有正交偏振的双重腐蚀梁

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摘要

Compact launching double arbitrarily accelerating caustic beams with orthogonal polarizations based on a metasurface are presented. By only tailoring the phase of the transmitted fields from an amorphous silicon elliptical posts array, launching double arbitrarily accelerating caustic beams with orthogonal polarizations is achieved. The trajectories of vector caustic beams with orthogonal polarizations are dependent on the phase modulations through the structural units of the metasurfaces. By changing the polarization of the incident light, dynamic switching between two caustic beams is obtained. Compared to the traditional methods, the simple design method can provide a very compact device overcoming some limitations of the traditional methods for generating vector caustic beams. The results can be used for potential applications in integrated optics, polarization optics, dynamic beam shaping, biosensing, and micro-particle manipulation. (C) 2020 Optical Society of America
机译:提出了基于元表面的正交偏振的紧凑型启动双重加速烧成苛性丝梁。 仅通过从非晶硅椭圆柱阵列剪裁透射场的相位,实现了具有正交偏振的双重任意加速苛性碱束。 具有正交偏振的矢量苛性束的轨迹取决于通过元核的结构单元的相位调制。 通过改变入射光的偏振,获得两个刻线之间的动态切换。 与传统方法相比,简单的设计方法可以提供一种非常紧凑的装置,克服了用于产生矢量苛性束的传统方法的一些限制。 结果可用于集成光学,极化光学,动态束整形,生物传感和微粒子操纵中的潜在应用。 (c)2020美国光学学会

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