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High-efficiency tri-band quasi-continuous phase gradient metamaterials based on spoof surface plasmon polaritons

机译:基于恶性表面等离子体激元极化子的高效三频准连续相梯度超材料

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摘要

A high-efficiency tri-band quasi-continuous phase gradient metamaterial is designed and demonstrated based on spoof surface plasmon polaritons (SSPPs). High-efficiency polarizaiton conversion transmission is firstly achieved via tailoring phase differece between the transmisive SSPP and the space wave in orthogonal directions. As an example, a tri-band circular-to-circular (CTC) polarization conversion metamateiral (PCM) was designed by a nonlinearly dispersive phase difference. Using such PCM unit cell, a tri-band quasi-continuous phase gradient metamaterial (PGM) was then realized by virtue of the Pancharatnam-Berry phase. The distribution of the cross-polarization transmission phase along the x-direction is continuous except for two infinitely small intervals near the phases 0° and 360°, and thus the phase gradient has definition at any point along the x-direction. The simulated normalized polarization conversion transmission spectrums together with the electric field distributions for circularly polarized wave and linearly polarized wave demonstrated the high-efficiency anomalous refraction of the quasi-continuous PGM. The experimental verification for the linearly polarized incidence was also provided.
机译:基于欺骗表面等离振子极化子(SSPPs),设计并演示了一种高效的三频准连续相梯度超材料。首先,通过调整透射SSPP和空间波在正交方向上的相位差,可以实现高效极化转换传输。例如,通过非线性色散相位差设计了三波段圆到圆(CTC)极化转换超材料(PCM)。然后,使用这样的PCM晶胞,借助Pancharatnam-Berry相实现了三频准连续相梯度超材料(PGM)。交叉极化透射相位沿x方向的分布是连续的,除了在相位0°和360°附近有两个无限小的间隔,因此相位梯度在沿x方向的任何点都有定义。模拟的归一化偏振转换透射谱以及圆极化波和线性极化波的电场分布证明了准连续PGM的高效反常折射。还提供了线性极化入射的实验验证。

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