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A novel wavelength switchable fiber laser source and its application in photonics beamforming for optically controlled phased array antenna

机译:新型波长可切换光纤激光源及其在光控相控阵天线光子束成形中的应用

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摘要

A novel wavelength-switchable fiber laser source that can individually scan 14 required wavelengths within 40 ms, and its application in photonics true time delay beamforming is presented in this paper. The laser source is constructed using a unidirectional fiber ring cavity, a tunable fiber Fabry-Perot filter and two cascaded sampled fiber Bragg gratings with the wavelength spacing of 1.6 nm. A five-channel true-time-delay system using the proposed fiber laser source cooperating with a single-mode fiber and four chirped-grating-based is constructed and demonstrated for the application of phased array antenna beam steering. Continuous beam steering at the microwave frequency up to 20 GHz has been achieved. [References: 9]
机译:本文提出了一种新颖的波长可切换光纤激光源,它可以在40 ms内单独扫描14个所需的波长,并将其应用于光子学真正的时延波束形成中。激光源使用单向光纤环形腔,可调光纤Fabry-Perot滤光片和两个波长间隔为1.6 nm的级联采样光纤布拉格光栅构成。利用相控阵天线波束控制技术,提出了一种基于单模光纤和基于四-光栅的光纤激光源的五通道实时延时系统。实现了高达20 GHz微波频率的连续波束控制。 [参考:9]

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