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Broadband Graphene Based Reflective Cross Polarization Converter Metasurface Design with Unity Efficiency in the Lower Terahertz Gap

机译:下太赫兹间隙中具有统一效率的基于宽带石墨烯的反射交叉极化转换器超表面设计

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This paper deals with a monolayer graphene based wideband reflective cross polarization converter metasurface structure effective over a wide range of incident angles in the lower terahertz gap of the electromagnetic spectrum. The unit cell of the metasurface comprises a modified split ring-shaped graphene pattern deposited over a gold backed silicon dioxide (SiO2) substrate. The proposed geometry converts incident linearly polarized (LP) wave to its cross polarized form with a near unity cross polarization conversion (CPC) ratio over a bandwidth of 2.53 THz in the lower terahertz gap ranging from 1.78 THz to 4.31 THz in which a near unity polarization conversion ratio (PCR) has been achieved. The PCR is greater than 0.9 over the band 2.5 THz to 4 THz while full width at half maxima (FWHM) fractional bandwidth of 92.89% with respect to center frequency of 3.05 THz has been realized. The wide bandwidth of CPC of the incident electromagnetic wave (EM) occurs till 40º incident angles under both TE and TM polarizations of the EM wave. The proposed CPC is ultrathin in nature by having a periodicity of λ/24 and thickness of λ/18.7 with respect to minimum frequency of the CPC bandwidth.
机译:本文研究了一种基于单层石墨烯的宽带反射交叉极化转换器超表面结构,该结构在电磁频谱的较低太赫兹间隙中的宽入射角范围内均有效。超颖表面的晶胞包括沉积在金背二氧化硅(SiO2)衬底上的修饰的裂环状石墨烯图案。所提出的几何结构在2.53 THz的带宽上,在1.78 THz至4.31 THz的较低太赫兹间隙内,以接近单位的交叉极化转换(CPC)比率将入射的线性极化(LP)波转换为其交叉极化形式。极化转化率(PCR)已经实现。 PCR在2.5 THz至4 THz频带上大于0.9,同时实现了相对于中心频率3.05 THz的半峰全宽(FWHM)分数带宽为92.89%。在电磁波的TE和TM极化下,入射电磁波(EM)的CPC的宽带宽一直出现到40º入射角。相对于CPC带宽的最小频率,建议的CPC具有λ/ 24的周期性和λ/ 18.7的厚度,因此具有超薄特性。

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