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A novel pulse source for low jitter optical sampling: a rugged alternative to mode-locked lasers

机译:用于低抖动光学采样的新型脉冲源:锁模激光器的坚固替代品

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摘要

A novel low jitter optical pulse source for applications including optical sampling has been modelled and experimentally verified using commercially available photonic components. Dispersion and non-linear fibre effects were utilised to compress a periodic optical waveform to generate pulses of the order of 10-15 picoseconds, via soliton-effect compression. Modelling of variable dispersion fibre indicates that future work will enable pulse compression to sub-picosecond durations. Attractive features of this new pulse source include electronically tuneable repetition rates over a continuous range at frequencies above ~1.5 GHz, ultra-short pulse duration (10-15 ps now, 100's fs planned), and low timing jitter as consistently measured by both harmonic analysis and single-sideband (SSB) phase noise measurements. In addition, the system is inherently robust to thermal effects unlike some low jitter pulse source alternatives, and does not require precise optical alignment. Timing jitter analysis reveals that the optical pulse timing jitter is currently limited by the mid-range specification microwave source used to create the initial periodic waveform. In order to overcome stimulated Brillouin scattering at high launch powers into the compression fibre, phase modulation was applied to the pulse train, and the timing jitter implications of this are discussed. It is believed that this is the first time that detailed timing jitter analysis has been performed on a soliton-effect compression scheme.
机译:一种新型的低抖动光脉冲源用于包括光学采样在内的应用已被建模,并使用商用光子组件进行了实验验证。利用色散和非线性光纤效应通过孤子效应压缩来压缩周期性的光学波形,以生成10-15皮秒量级的脉冲。可变色散光纤的建模表明,未来的工作将使脉冲压缩到亚皮秒的持续时间。这种新型脉冲源的吸引人的特点包括:在〜1.5 GHz以上的频率下,在连续范围内可电子调节的重复频率;超短脉冲持续时间(现在为10-15 ps,计划为100的fs);以及低时基抖动(由两个谐波一致地测量)分析和单边带(SSB)相位噪声测量。此外,与某些低抖动脉冲源替代方案不同,该系统具有固有的抗热效应能力,并且不需要精确的光学对准。时序抖动分析表明,光脉冲时序抖动目前受到用于创建初始周期波形的中档规格微波源的限制。为了克服高发射功率下的布里渊散射到压缩光纤中,将相位调制应用于脉冲序列,并讨论其定时抖动的含义。可以相信,这是首次对孤子效应压缩方案进行详细的定时抖动分析。

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