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Beam Steering in Graphene-Based sub-THz Dipole Phased Array Antenna

机译:基于石墨烯的亚太赫兹偶极子相控阵天线的波束控制

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摘要

This paper proposes a novel low-profile structure of graphene-based sub-THz reconfigurable phased array antenna for versatile beam steering function. The model is composed of a pair of dipole antenna coupled symmetrically to the feed point through co-planar strip-line (CPS) and two graphene sheets loaded at the lower boundary of the CPS. To exploit beam steering capability, the chemical potential of each sheet is tuned independently by applying two adequate DC biasing voltages. Along with its simplicity, the proposed model enables versatile beam steering via a narrow tuning range of chemical potential, therefore, promoting for easy implementation through the common available micro-fabrication techniques. Through simulating the model at the D-band, it is shown that beam steering of $pm 22^{circ}$ can be achieved at 150 GHz in the E-plane with a chemical potential that varies from 0 to 0.2 eV. Due to the low-profile design and narrow chemical potential range, the proposed model is potentially promising to be applicable at higher frequencies up to visible band.
机译:本文提出了一种新颖的低轮廓结构的基于石墨烯的亚太赫兹可重构相控阵天线,以实现通用的波束控制功能。该模型由一对偶极天线组成,该偶极天线通过共面带状线(CPS)对称耦合到馈电点,并且在CPS的下边界处加载了两个石墨烯片。为了利用光束控制能力,可通过施加两个适当的直流偏置电压来独立调整每张纸的化学势。除了其简单性外,所提出的模型还可以通过狭窄的化学势调节范围实现通用的光束控制,因此,可以通过常见的微细加工技术轻松实施。通过对D波段的模型进行仿真,表明了光束的光束转向 $ \ pm 22 ^ {\ circ} $ 可以在E平面上以150 GHz的频率实现化学势,其电势范围为0至0.2 eV。由于低调设计和较窄的化学势范围,所提出的模型潜在地有望在高达可见带的更高频率下应用。

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