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首页> 外文期刊>Journal of Computational Electronics >A graphene-based multiband antipodal Vivaldi nanoantenna for UWB applications
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A graphene-based multiband antipodal Vivaldi nanoantenna for UWB applications

机译:基于石墨烯的多曲面抗双子vivaldi纳米纳米纳米纳米纳蒽纳米,用于UWB应用

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摘要

The design and optimization of an antipodal Vivaldi antenna using graphene material for ultra-wideband applications are described. A frequency-reconfigurable graphene antipodal Vivaldi antenna operating in the terahertz band is designed on a silicon dioxide substrate having thickness h = 3 μm. The antenna is designed and simulated using the finite integration technique in the commercially available Computer Simulation Technology (version 2016) electromagnetic simulation software. Due to its flexibility and hexagonal nature, the graphene-based THz antenna demonstrates multiband resonances. The results for the graphene-based antipodal Vivaldi antenna parameters, such as the return loss, bandwidth, voltage standing wave ratio (VSWR), three-dimensional (3D) and two-dimensional (2D) gain and directivity with co- and cross-polarization, and side-lobe levels, are analyzed. The designed graphene antenna exhibits four resonance bands in the terahertz range, covering the frequency range from 1 to 5 THz. The peak gain can reach 6.48 dBi with directivity of 8.3 dBi at the resonant frequency of 2.31 THz in the operating band from 1.44 to 2.4 THz.
机译:描述了使用石墨烯材料进行对超宽带应用的抗双向Vivaldi天线的设计和优化。在太赫兹带中操作的频率可重新配置的石墨烯反双向VivalDi天线设计在具有厚度H =3μm的二氧化硅基板上。使用市售计算机仿真技术(2016年)电磁仿真软件中的有限集成技术设计和模拟天线。由于其灵活性和六边形性质,基于石墨烯的THz天线证明了多频带共振。基于石墨烯的反双向Vivaldi天线参数的结果,例如返回损耗,带宽,电压驻波比(VSWR),三维(3D)和二维(2D)增益和与共同和交叉的指向性分析极化和侧瓣水平。设计的石墨烯天线在太赫兹范围内展示了四个共振带,覆盖1至5至5至5至5至5至5至5至5至5至5至5至5至5至5至5至5至5至5至5至5。峰值增益可达到6.48 dBI,可方向性为8.3 dbi,在1.44至2.4至2.4 thz的操作带中的谐振频率为2.31 thz。

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