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Graphene-based Yagi-Uda antenna with reconfigurable radiation patterns

机译:具有可重配置辐射方向图的基于石墨烯的八木宇田天线

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摘要

This paper presents a radiation pattern reconfigurable Yagi-Uda antenna based on graphene operating at terahertz frequencies. The antenna can be reconfigured to change the main beam pattern into two or four different radiation directions. The proposed antenna consists of a driven dipole radiation conductor, parasitic strips and embedded graphene. The hybrid graphene-metal implementation enables the antenna to have dynamic surface conductivity, which can be tuned by changing the chemical potentials. Therefore, the main beam direction, the resonance frequency, and the front-to-back ratio of the proposed antenna can be controlled by tuning the chemical potentials of the graphene embedded in different positions. The proposed two-beam reconfigurable Yagi-Uda antenna can achieve excellent unidirectional symmetrical radiation pattern with the front-to-back ratio of 11.9 dB and the10-dB impedance bandwidth of 15%. The different radiation directivity of the two-beam reconfigurable antenna can be achieved by controlling the chemical potentials of the graphene embedded in the parasitic stubs. The achievable peak gain of the proposed two-beam reconfigurable antenna is about 7.8 dB. Furthermore, we propose a four-beam reconfigurable Yagi-Uda antenna, which has stable reflection-coefficient performance although four main beams in reconfigurable cases point to four totally different directions. The corresponding peak gain, front-to-back ratio, and 10-dB impedance bandwidth of the four-beam reconfigurable antenna are about 6.4 dB, 12 dB, and 10%, respectively. Therefore, this novel design method of reconfigurable antennas is extremely promising for beam-scanning in terahertz and mid-infrared plasmonic devices and systems.
机译:本文提出了一种基于以太赫兹频率工作的石墨烯的辐射方向图可重配置的Yagi-Uda天线。可以将天线重新配置为将主波束方向图更改为两个或四个不同的辐射方向。拟议的天线由驱动偶极辐射导体,寄生带和嵌入式石墨烯组成。石墨烯-金属的混合实现方式使天线具有动态表面电导率,可以通过改变化学势来对其进行调节。因此,可以通过调节嵌入在不同位置的石墨烯的化学势来控制所建议天线的主波束方向,谐振频率和前后比率。所提出的两束可重构八木-宇田天线可以实现出色的单向对称辐射方向图,前后比为11.9 dB,10-dB阻抗带宽为15%。可通过控制嵌入在寄生短截线中的石墨烯的化学势来实现两束可重构天线的不同辐射方向性。所提出的两波束可重构天线可实现的峰值增益约为7.8 dB。此外,我们提出了一种四波束可重配置的八木宇田天线,该天线具有稳定的反射系数性能,尽管在可重配置情况下四个主波束指向四个完全不同的方向。四波束可重构天线的相应峰值增益,前后比和10 dB阻抗带宽分别约为6.4 dB,12 dB和10%。因此,这种新颖的可重构天线设计方法对于太赫兹和中红外等离子体装置和系统中的波束扫描非常有前途。

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