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基于各向异性超表面的超宽带线性偏振转换器

Ultra-broadband linear polarization converter based on anisotropic metasurface.

作者信息

Xu Jin, Li Rongqiang, Wang Shenyun, Han Tiancheng

出版信息

Opt Express. 2018 Oct 1;26(20):26235-26241. doi: 10.1364/OE.26.026235.

Abstract

Through the manipulation of co-polarized reflection and cross-polarized reflection from a periodic array of metal-dielectric-metal resonators, a plethora of unprecedented metamaterial devices have been successfully demonstrated, such as perfect absorber and polarization converter. Recently, some broadband absorbers based on anisotropic resonators have been reported, which are actually poor absorbers when the cross-polarized reflection is considered. Here, we demonstrate that an ultra-wideband and high-efficiency reflective cross-polarization convertor can be achieved by breaking the symmetry of the resonator unit of a perfect absorber. Simulation results show that the polarization conversion ratio of the proposed metasurface is above 90% in the frequency range from 6.67 to 17.1 GHz and the relative bandwidth reaches 87.7%. The experimental results are in good agreement with the simulation results. The method paves a new way for the design of broadband polarization convertor, which can also be extended to the terahertz band.

摘要

通过操控来自金属-电介质-金属谐振器周期性阵列的同极化反射和交叉极化反射,已经成功展示了大量前所未有的超材料器件,如完美吸收体和偏振转换器。最近,一些基于各向异性谐振器的宽带吸收体被报道,然而当考虑交叉极化反射时,它们实际上是较差的吸收体。在此,我们证明通过打破完美吸收体谐振器单元的对称性,可以实现超宽带高效反射交叉极化转换器。仿真结果表明,所提出的超表面在6.67至17.1GHz频率范围内的偏振转换率高于90%,相对带宽达到87.7%。实验结果与仿真结果吻合良好。该方法为宽带偏振转换器的设计开辟了一条新途径,并且还可扩展到太赫兹频段。

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