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Programmable High-Order OAM-Carrying Beams for Direct-Modulation Wireless Communications

机译:用于直接调制无线通信的可编程高阶OAM携带梁

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摘要

Electromagnetic (EM) beams carrying orbital angular momentum (OAM) are of great importance in modern wireless communications due to their attractive properties of self-reconstruction and multiplexing multiple beams. However, they are hardly deployed in a real-world scenario since they cannot be dynamically generated in a real-time and low-cost way, especially for the case of topological charges more than 2. To resolve this issue, we explore an inexpensive 2-bit programmable coding metasurface working at around 3.2 GHz along with an efficient optimization algorithm for the generation of high-order OAM-carrying beams in a reprogrammable way. Based on the designed metasurface, we can generate OAM EM beams with the electronically controlled vortex centers and topological charges of l=0$ , +/- 1, +/- 2, +/- 3, +/- 4, +/- 5, and +/- 6, which have been experimentally verified. As an illustrative example, we demonstrate an interesting application of the designed 2-bit programmable metasurface in direct-modulation line-of-sight wireless communications. We believe that the developed strategy will bring a fundamentally new perspective on the design of wireless communication architectures at various frequencies.
机译:携带轨道角动量(OAM)的电磁(EM)光束由于其具有自我重建和多路复用多梁的有吸引力和多个光束而在现代无线通信中具有重要意义。然而,它们几乎没有部署在真实的情景中,因为它们不能以实时和低成本的方式动态生成,特别是对于拓扑费用超过2.解决这个问题,我们探索了廉价的2 -bit可编程编码元表面在大约3.2GHz上工作,以及以可再编程的方式产生高阶OAM携带梁的优化算法。基于设计的元曲面,我们可以使用电子控制的涡旋中心和L = 0 $,+/- 1,+/- 2,+/- 3,+/- 4,+/-的拓扑电荷产生OAM EM梁。 5,+/- 6,已经过实验验证。作为说明性示例,我们展示了在直接调制线上无线通信中设计了设计的2位可编程元表面的有趣应用。我们认为,发达的战略将在各种频率下实现关于无线通信架构的设计的基本新的视角。

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