Adjustable beam antenna using high impedance surface with graphene parts and photonic bandgap for THz applications

Hossein Omidi, S. Jarchi
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Abstract

A reconfigurable beam terahertz antenna, applying graphene, is designed and investigated. The presented design consists of a circular loop antenna mounted on a multilayer structure composed of a high impedance surface, with circular configuration and composed of metal and graphene parts, and a photonic bandgap layer. A reconfigurable main beam is achieved as the chemical potential of the designed HIS sections are varied between 0 and 1eV and, the photonic bandgap provides return loss improvement and gain enhancement due to reduction of surface waves loss. The performance of the designed antenna is investigated through the gain, radiation pattern and reflection coefficient parameters. The results show that main beam of the loop antenna is adjusted in 25 directions of different elevation and azimuth angles and, the maximum gain of 6.57 dBi at 1 THz with 22-degrees tilt on ϕ = 0 plane is achieved.
可调波束天线采用高阻抗表面与石墨烯部件和光子带隙太赫兹应用
设计并研究了一种基于石墨烯的可重构波束太赫兹天线。该设计包括一个环形天线,安装在由金属和石墨烯部件组成的高阻抗表面组成的多层结构上,具有圆形结构,以及光子带隙层。当设计的HIS部分的化学势在0和1eV之间变化时,实现了可重构的主束,并且由于减少了表面波损失,光子带隙提供了回波损耗改善和增益增强。通过增益、辐射方向图和反射系数等参数对设计天线的性能进行了研究。结果表明,环形天线的主波束在25个不同仰角和方位角的方向上进行调节,在1太赫兹时,在φ = 0平面上倾斜22度,获得了6.57 dBi的最大增益。
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