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A 2–20-GHz Ultralow Phase Noise Signal Source Using a Microwave Oscillator Locked to a Mode-Locked Laser

机译:使用微波振荡器锁定到模式锁定激光器的2-20-GHz UltraLow相位噪声信号源

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摘要

In this article, we develop the theory of a special type of optoelectronic phase-locked loop (PLL). The output signal of this type of PLL is in the electrical domain and its reference oscillator, typically a mode-locked laser, operates in the optical domain. The PLL uses a balanced optical microwave phase detector (BOMPD). In order to model the optoelectronic PLL, the nonlinear characteristic function and the gain of the BOMPD are derived analytically. Using the results of the phase detector analysis, the theory of an optoelectronic PLL using such a phase detector is developed. Based on the theoretical analysis, a broadband optoelectronic frequency synthesizer with a programmable frequency range from 2 to 20 GHz is designed and implemented. Phase noise measurements show that the optoelectronic PLL frequency synthesizer achieves an integrated rms-jitter (1 kHz-100 MHz) of less than 4 fs in the frequency range from 5 to 20 GHz with a typical value of 4 fs and a minimum of 3 fs. This is the first reported wideband PLL frequency synthesizer achieving sub-10-fs integrated rms-jitter (1 kHz-100 MHz) in the frequency range from 3 to 20 GHz. A comparison with best-in-class laboratory-grade frequency synthesizers in this frequency range shows that this synthesizer achieves lower phase noise than any electronic frequency synthesizer for offset frequencies larger than 2 kHz.
机译:在本文中,我们开发了一种特殊类型的光电锁相环(PLL)的理论。这种类型的PLL的输出信号在电域和其参考振荡器中,通常是锁定激光器,在光学域中操作。 PLL使用平衡光学微波相位检测器(BOPPD)。为了模拟光电PLL,分析地推导出非线性特征函数和BOPPD的增益。使用相位检测器分析的结果,开发了使用这种相位检测器的光电PLL理论。基于理论分析,设计并实施了具有2至20 GHz的可编程频率范围的宽带光电频率合成器。相位噪声测量表明,光电子PLL频率合成器在频率范围内实现小于4FS的集成RMS-抖动(1kHz-100MHz),其频率范围为5至20GHz,典型值为4 FS和至少3个FS 。这是第一个报告的宽带PLL频率合成器在3到20 GHz的频率范围内实现子10-FS集成的RMS-抖动(1kHz-100MHz)。在该频率范围内与最佳实验室级频率合成器的比较表明,该合成器实现了比任何大于2kHz的偏移频率的电子频率合成器更低的相位噪声。

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