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A Method Based on Meta-surface Bessel Lens for Converging OAM Beams

机译:基于亚表面贝塞尔透镜的OAM光束会聚方法

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OAM beams generated by circular phased antenna array have large divergence angles, which restricts the effective transmission distance. To alleviate this drawback, in this paper, a planar Bessel lens composed of $21 imes 21$ multilayer meta-surface units is proposed. The meta-surface unit consists of four metallic layers of the same “quasi-cross” type copper and three dielectric layers. An ample 360° phase shift can be achieved with a good transmission coefficient through changing the length of the quasi-cross patch. The simulation results show that the proposed Bessel lens not only reduces the central empty area but also improves the gain. The divergence angle of OAM mode $l=+1$ falls 4° and the gain improves 2.5 dBi while the divergence angle of OAM mode $l=+2$ drops 8° and the gain increases 0.5 dBi, which increases the feasibility of practical applications using OAM beams.
机译:圆形相控阵天线产生的OAM波束发散角大,限制了有效的传输距离。为了缓解这一缺点,本文提出了一种由 $ 21 \ times 21 $ 提出了多层亚表面单元。超表面单元由相同“准交叉”型铜的四个金属层和三个介电层组成。通过改变准交叉贴片的长度,可以以良好的透射系数实现足够的360°相移。仿真结果表明,所提出的贝塞尔透镜不仅减小了中心空区,而且提高了增益。 OAM模式的发散角 $ l = + 1 $ < / tex> 下降4°且增益提高2.5 dBi,而OAM模式的发散角 $ l = + 2 $ < / tex> 下降8°,增益增加0.5 dBi,这增加了使用OAM光束进行实际应用的可行性。

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