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High Efficiency Ultrathin Transmissive Metasurfaces

机译:高效超薄透射超表面

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摘要

Metasurfaces offer unprecedented freedom to manipulate electromagnetic waves at deeply subwavelength scales. However, realizing a highly efficient metasurface, yet simple enough to conceptualize, design, and fabricate, is a challenging task. In this paper, a novel approach is proposed for designing meta-atoms which can achieve full phase control in the range 0-2 pi with high efficiency in the transmission mode. In particular, a bilayer meta-atom is designed, exploiting nearly perfect polarization conversion of the two orthogonal transmissions, whose transmission efficiency reaches as high as 85%. The transmission phase control in the circular polarization basis is achieved with the axial rotation of the proposed meta-atom based on Pancharatnam-Berry phase principle. These meta-atoms are then wielded to construct metasurfaces for generating vortex beams carrying orbital angular momentum. The conversion efficiency as high as 75% and a transmission efficiency of 55% are achieved for the realized metasurfaces.
机译:超表面提供了前所未有的自由,可在深亚波长范围内操纵电磁波。然而,实现高效的超表面,但又足够简单以进行概念化,设计和制造,是一项艰巨的任务。在本文中,提出了一种新颖的设计超原子的方法,该方法可以在透射模式下以0-2 pi的范围实现全相控制,并且效率很高。特别是,设计了一种双层超原子,利用了两个正交传输的近乎完美的极化转换,其传输效率高达85%。基于Pancharatnam-Berry相原理,通过所提出的偏原子的轴向旋转,实现了圆极化基础上的传输相位控制。然后,将这些超原子用于构建超表面,以产生携带轨道角动量的涡旋束。对于已实现的超表面,可实现高达75%的转换效率和55%的传输效率。

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