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

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作者
Yongfeng Li
Jieqiu Zhang
Hua Ma
Jiafu Wang
Yongqiang Pang
Dayi Feng
Zhuo Xu
Shaobo Qu
机构
[1] College of Science,
[2] Air Force Engineering University,undefined
[3] Electronic Materials Research Laboratory,undefined
[4] Key Laboratory of Ministry of Education,undefined
[5] Xi’an Jiao-tong University,undefined
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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.
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