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A terahertz reconfigurable photo-induced fresnel-zone-plate antenna for dynamic two-dimensional beam steering and forming

机译:太赫兹可重构光致菲涅耳带板天线,用于动态二维波束控制和成形

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摘要

We report a novel and simple approach to realize terahertz (THz) dynamic two-dimensional (2D) beam steering and forming antennas, based on reconfigurable photo-induced Fresnel zone plates (PI-FZPs). The FZPs are formed by directly illuminating a high-resistivity silicon wafer with the desired patterns using a digital light processing (DLP) projector, without any circuit or device fabrication. At 750 GHz, the THz beam from a diagonal horn antenna has been steered two dimensionally over a range from approximately -12° to +12° from the antenna boresight, by projecting different PI-FZP patterns. In addition, using PI-FZPs with different focal lengths, the THz beam size can be dynamically tuned. Both the beam steering and forming can be performed simultaneously without affecting the antenna performance, making this an enabling technology for emerging THz applications such as sensing, imaging, tracking, adaptive wireless communications and short-range high-speed interconnections.
机译:我们报告了一种新颖且简单的方法,它基于可重配置的光感应菲涅耳波带片(PI-FZPs)实现太赫兹(THz)动态二维(2D)波束控制和成形天线。通过使用数字光处理(DLP)投影仪以所需的图案直接照射高电阻率的硅晶片来形成FZP,无需任何电路或器件制造。在750 GHz上,通过投射不同的PI-FZP模式,已对角喇叭天线的THz波束在距天线视轴约-12°至+ 12°的范围内进行了二维控制。此外,使用具有不同焦距的PI-FZP,可以动态调整THz光束大小。波束控制和成形都可以同时进行,而不会影响天线性能,这使其成为新兴的THz应用的使能技术,例如传感,成像,跟踪,自适应无线通信和短距离高速互连。

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