论文标题
基于微波频率极化反射array的轨道角动量的产生和聚焦
Generation and Focusing of Orbital Angular Momentum Based on Polarized Reflectarray at Microwave Frequency
论文作者
论文摘要
设计,制造和实验表征的一种新型的极化反射式阵列,以显示其灵活性和效率,以控制波动角动量(OAM)涡旋,并在微波频率状态下具有理想的OAM模式。为了严格研究OAM的产生和聚焦,提出了一种多功能分析理论,以理论上研究反射片的补偿阶段。在12 GHz的生成中制造了两种原型微波反射阵列并实验表征,一个用于聚焦oaM携带梁。与OAM生成反射式阵列相比,聚焦OAM涡流的反射仪可显着降低束直径,这可以进一步提高OAM涡流束的传输效率。我们还表明,数值和实验结果非常吻合。提出的设计方法和反射阵列可能会刺激开发新的高效方法,以生成和聚焦OAM涡流波,以应用于微波无线通信。
A novel polarized reflectarray is designed, fabricated, and experimentally characterized to show its flexibility and efficiency to control wave generation and focusing of orbital angular momentum (OAM) vortices with desirable OAM modes in the microwave frequency regime. In order to rigorously study the generation and focusing of OAM, a versatile analytical theory is proposed to theoretically study the compensation phase of reflectarray. Two prototypes of microwave reflectarrays are fabricated and experimentally characterized at 12 GHz, one for generation and one for focusing of OAM-carrying beams. Compared with the OAM-generating reflectarray, the reflectarray for focusing OAM vortex can significantly reduce the beam diameter, and this can further improve the transmission efficiency of the OAM vortex beams. We also show that the numerical and experimental results agree very well. The proposed design method and reflectarrays may spur the development of new efficient approaches to generate and focus OAM vortex waves for applications to microwave wireless communications.