Zazzi Andrea, Müller Juliana, Gudyriev Sergiy, Marin-Palomo Pablo, Fang Dengyang, Scheytt J Christoph, Koos Christian, Witzens Jeremy
Opt Express. 2020 Jun 22;28(13):18790-18813. doi: 10.1364/OE.382832.
The effect of phase noise introduced by optical sources in spectrally-sliced optically enabled DACs and ADCs is modeled and analyzed in detail. In both data converter architectures, a mode-locked laser is assumed to provide an optical comb whose lines are used to either synthesize or analyze individual spectral slices. While the optical phase noise of the central MLL line as well as of other optical carriers used in the analyzed system architectures have a minor impact on the system performance, the RF phase noise of the MLL fundamentally limits it. In particular, the corresponding jitter of the MLL pulse train is transferred almost one-to-one to the system-level timing jitter of the data converters. While MLL phase noise can in principle be tracked and removed by electronic signal processing, this results in electric oscillator phase noise replacing the MLL jitter and is not conducive in systems leveraging the ultra-low jitter of low-noise mode-locked lasers. Precise analytical models are derived and validated by detailed numerical simulations.
详细建模并分析了光谱切片光控数模转换器(DAC)和模数转换器(ADC)中光源引入的相位噪声的影响。在这两种数据转换器架构中,均假定锁模激光器提供一个光学频率梳,其谱线用于合成或分析各个光谱切片。虽然分析的系统架构中使用的中心锁模激光器(MLL)谱线以及其他光载波的光学相位噪声对系统性能影响较小,但MLL的射频相位噪声从根本上限制了系统性能。特别是,MLL脉冲序列的相应抖动几乎一对一地转移到数据转换器的系统级定时抖动上。虽然原则上可以通过电子信号处理来跟踪和消除MLL相位噪声,但这会导致电振荡器相位噪声取代MLL抖动,并且不利于利用低噪声锁模激光器的超低抖动的系统。通过详细的数值模拟推导并验证了精确的分析模型。