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Asymmetric transmission of linearly polarized waves and polarization angle dependent wave rotation using a chiral metamaterial

机译:使用手性超材料的线性偏振波的非对称传输和与偏振角有关的波旋转

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摘要

An electrically thin chiral metamaterial structure composed of four U-shaped split ring resonator pairs is utilized in order to realize polarization rotation that is dependent on the polarization of the incident wave at 6.2 GHz. The structure is optimized such that a plane wave that is linearly polarized at an arbitrary angle is an eigenwave of the system at this frequency. The analytical relation between the incident polarization and the polarization rotation is derived using transmission matrices. Furthermore, the proposed structure exhibits an asymmetric transmission of linearly polarized waves at 6.2 GHz. Plane waves traveling in opposite but perpendicular directions to the material plane are rotated by different angles. On the other hand, four incident polarization angles have been found for the same structure, at which the transmission is symmetric. The experiment results are in good agreement with the numerical results. © 2011 Optical Society of America.
机译:为了实现依赖于6.2 GHz入射波偏振的偏振旋转,利用了由四个U形开口环谐振器对组成的电薄手性超材料结构。优化该结构,使得以任意角度线性极化的平面波在该频率下为系统的本征波。使用透射矩阵推导入射偏振和偏振旋转之间的解析关系。此外,提出的结构在6.2 GHz频率下呈现线性偏振波的不对称传输。沿与材料平面相反但垂直的方向传播的平面波旋转了不同的角度。另一方面,对于透射是对称的相同结构,发现了四个入射偏振角。实验结果与数值结果吻合良好。 ©2011美国眼镜学会。

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