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Microwave birefringent metamaterials for polarization conversion based on spoof surface plasmon polariton modes

机译:基于欺骗表面等离子体激元极化模的用于偏振转换的微波双折射超材料

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摘要

We propose the design of wideband birefringent metamaterials based on spoof surface plasmon polaritons (SSPPs). Spatial k-dispersion design of SSPP modes in metamaterials is adopted to achieve high-efficiency transmission of electromagnetic waves through the metamaterial layer. By anisotropic design, the transmission phase accumulation in metamaterials can be independently modulated for x- and y-polarized components of incident waves. Since the dispersion curve of SSPPs is nonlinear, frequency-dependent phase differences can be obtained between the two orthogonal components of transmitted waves. As an example, we demonstrate a microwave birefringent metamaterials composed of fishbone structures. The full-polarization-state conversions on the zero-longitude line of Poincaré sphere can be fulfilled twice in 6–20 GHz for both linearly polarized (LP) and circularly polarized (CP) waves incidence. Besides, at a given frequency, the full-polarization-state conversion can be achieved by changing the polarization angle of the incident LP waves. Both the simulation and experiment results verify the high-efficiency polarization conversion functions of the birefringent metamaterial, including circular-to-circular, circular-to-linear(linear-to-circular), linear-to-linear polarization conversions.
机译:我们提出了基于欺骗性表面等离子体激元极化子(SSPPs)的宽带双折射超材料的设计。采用超材料中SSPP模式的空间k色散设计,以实现电磁波通过超材料层的高效传输。通过各向异性设计,可以针对入射波的x和y偏振分量独立调制超材料中的传输相位累积。由于SSPP的色散曲线是非线性的,因此可以在发射波的两个正交分量之间获得与频率有关的相位差。例如,我们演示了由鱼骨结构组成的微波双折射超材料。对于线性极化(LP)和圆极化(CP)入射波,庞加莱球零经线上的全极化状态转换可以在6–20 GHz中完成两次。此外,在给定的频率下,可以通过改变入射LP波的偏振角来实现全偏振态转换。仿真和实验结果均验证了双折射超材料的高效偏振转换功能,包括圆到圆,圆到线性(线性到圆),线性到线性偏振转换。

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