Dual-band Chiral Metasurface with Linear Asymmetric Transmission and Orthogonal Polarization Conversion over a wide Incidence Angle for Ku-band and 5G Applications

Aisha Bibi, Muhammad Ismail Khan, Imdad Khan
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Abstract

A bilayer, ultrathin, dual-band chiral metasurface is designed and analyzed in this paper with linear polarization conversion and asymmetric transmission for Ku-band and 5G communications. The polarization conversion efficiency of the first band (11.8-13.5 GHz) is ultra-high having a value 0.95 at 12GHz and that of the second band (26.2-26.7 GHz) is 0.9 at 25.6 GHz. The proposed structure also exhibits linear polarization asymmetric transmission in both bands with asymmetric parameters above 90% and above 80% for the first and second bands, respectively. The structure is ultrathin with respect to lowest resonating frequency of 12 GHz having thickness of 0.032λ0. Moreover, the structure is also angularly stable upto 60° for first band and upto 30° for second band, making the structure robust for practical applications. Due to scalability of the design, the proposed structure finds wide range of applications, covering a large spectrum from microwave to 5G bands.
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宽入射角线性不对称传输和正交偏振转换的双波段手性超表面用于ku波段和5G应用
本文设计并分析了一种用于ku波段和5G通信的双层超薄双频手性超表面,该超表面具有线性极化转换和非对称传输。第一频段(11.8-13.5 GHz)的极化转换效率超高,在12GHz时为0.95,第二频段(26.2-26.7 GHz)在25.6 GHz时为0.9。该结构在两波段均表现出线偏振不对称透射,第一波段和第二波段的不对称参数分别大于90%和80%。该结构是超薄的,相对于最低谐振频率为12 GHz,厚度为0.032λ0。此外,该结构的角度稳定,第一波段为60°,第二波段为30°,使结构在实际应用中具有鲁棒性。由于设计的可扩展性,所提出的结构具有广泛的应用范围,涵盖了从微波到5G频段的大频谱。
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