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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Programmable terahertz vortex beam reflectarray antenna based on a graphene phoenix unit cell
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Programmable terahertz vortex beam reflectarray antenna based on a graphene phoenix unit cell

机译:基于石墨烯凤凰单元单元的可编程太赫兹涡流射线反射阵列天线

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摘要

In this paper, for the first time, the concept, analysis and equivalent circuit of a phoenix graphene patch (PGP) unit cell is presented. It is shown that a full 360 degrees phase range can be realized by this unit cell, unlike common graphene patch unit cells, by only separately changing the physical or electrical parameters. Then, a reflectarray antenna based on the PGP cell is designed. The required phases are easily realized by only changing the element dimensions in the cell. The gain and radiation efficiency of the designed antenna are 26 dBi and 75%, respectively. Finally, a programmable vortex beam reflectarray is proposed, whereby the required phases are realized only by the chemical potential of the graphene sheet. The structure is discretized to five sections in the radial direction and eight sections in the azimuth direction. In comparison to other structures, the proposed design can easily generate different vortex beams in real-time by changing the biasing voltages of these sections.
机译:本文首次提出了菲尼克斯石墨烯贴片(PGP)单元的概念、分析和等效电路。结果表明,与普通的石墨烯贴片单元不同,该单元只需单独改变物理或电学参数,即可实现360度的全相位范围。然后,设计了基于PGP单元的反射式阵列天线。只需改变单元中的元件尺寸,即可轻松实现所需的相位。所设计天线的增益和辐射效率分别为26 dBi和75%。最后,提出了一种可编程涡旋束反射阵列,通过这种阵列,所需的相位仅由石墨烯片的化学势实现。该结构在径向上离散为五个截面,在方位方向上离散为八个截面。与其他结构相比,该设计通过改变这些截面的偏置电压,可以方便地实时产生不同的涡旋光束。

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