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Photonic generation of phase-stable and wideband chirped microwave signals based on phase-locked dual optical frequency combs

机译:基于锁相双光频梳的相稳定宽带phase微波信号的光子产生

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摘要

A photonics-based scheme is presented for generating wideband and phase-stable chirped microwave signals based on two phase-locked combs with fixed and agile repetition rates. By tuning the difference of the two combs' repetition rates and extracting different order comb tones, a wideband linearly frequency-chirped microwave signal with flexible carrier frequency and chirped range is obtained. Owing to the scheme of dual-heterodyne phase transfer and phase-locked loop, extrinsic phase drift and noise induced by the separated optical paths is detected and suppressed efficiently. Linearly frequency-chirped microwave signals from 5 to 15 GHz and 237 to 247 GHz with 30 ms duration are achieved, respectively, contributing to the time-bandwidth product of 3 x 10(8). And less than 1.3 x 10(-5) linearity errors (RMS) are also obtained. (C) 2016 Optical Society of America
机译:提出了一种基于光子学的方案,该方案基于具有固定重复率和敏捷重复率的两个锁相梳来生成宽带和相位稳定的chi微波信号。通过调整两个梳齿重复频率的差并提取不同阶的梳齿音,可以获得具有灵活载波频率和线性调频范围的宽带线性线性线性调频微波信号。由于采用了双外差相移和锁相环的方案,可以有效地检测和抑制由分离的光路引起的外部相移和噪声。分别获得了持续时间为30 ms的5至15 GHz和237至247 GHz的线性频率microwave微波信号,其时间带宽积为3 x 10(8)。并且还获得了小于1.3 x 10(-5)的线性误差(RMS)。 (C)2016美国眼镜学会

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