首页> 外文会议>Frequency Control Symposium (FCS), 2012 IEEE International >Long-term stable sub-femtosecond synchronization of microwave signals with mode-locked Er-fiber lasers
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Long-term stable sub-femtosecond synchronization of microwave signals with mode-locked Er-fiber lasers

机译:用锁模Er光纤激光器长期稳定的亚飞秒微波信号同步

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We present a fiber-based optical-microwave phase detector that detects the phase error between optical pulse trains and microwave signals with sub-fs resolution over 1 MHz bandwidth. The proposed phase detector is used to synchronize microwave signals from VCO with optical pulse trains from mode-locked Er-fiber lasers. The residual phase noise between the optical pulse trains and the synchronized microwave signals is −133 dBc/Hz (−154 dBc/Hz) at 1 Hz (5 kHz) offset frequency, which results in 838 as integrated rms timing jitter [1 Hz–1 MHz]. The long-term residual phase drift is 847 as (rms) measured over 2 hours. We also used the phase detector and the low-jitter Er-fiber laser to measure the phase noise of a microwave signal synthesizer.
机译:我们提出了一种基于光纤的光学微波相位检测器,该检测器可检测光脉冲序列与微波信号之间的相位误差,其子fs分辨率超过1 MHz带宽。所提出的相位检测器用于将来自VCO的微波信号与来自锁模Er光纤激光器的光脉冲序列进行同步。在1 Hz(5 kHz)偏移频率下,光脉冲序列和同步的微波信号之间的残留相位噪声为−133 dBc / Hz(−154 dBc / Hz),导致838积分rms定时抖动[1 Hz– 1 MHz]。在2小时内测得的长期残余相位漂移为(rms)847。我们还使用了鉴相器和低抖动Er光纤激光器来测量微波信号合成器的相位噪声。

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