具有多ghz重复速率扫描范围的皮秒电光梳

IF 2.3 3区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Haoyun Zhang;Xuecheng Wu;Dongyuan Li;Yafei Meng;Shining Zhu;Fengqiu Wang
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引用次数: 0

摘要

传统的电光(EO)梳子以其重复频率的灵活性而闻名。然而,由于级联相位和强度调制器的驱动信号之间的非零时间延迟,这种系统很少能够承受多ghz调谐范围,同时保持高质量的时间形状。在这封信中,我们建立了一个递减的调制器延迟时间是影响短脉冲EO梳的重复速率扫描性能的唯一最重要的因素。通过将调制器延迟时间降低到零,我们展示了一种能够在超宽频率范围(6-10 GHz)内进行扫频的EO梳,同时持续输出高质量的$ $ sim ~5$ ps脉冲。重要的是,“零调制器延迟时间”策略固有地确保了所有频率的相位匹配,并且完全消除了扫描速度的限制。脉冲持续时间和时间形状具有高度的稳定性和可重复性,并且在调谐范围内所有重复频率的定时抖动都在125 fs以下。我们还通过将种子半导体激光器的中心波长从1535 nm调整到1565 nm,证明了这种系统的波长敏捷性。在整个调谐范围内,实现了超过40 dB的光信噪比。这种简单的方法为稳定EO梳的脉冲持续时间提供了有效的解决方案,并且可以在异步光学采样或其他时间分辨实验中找到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Picosecond Electro-Optic Comb With Multi-GHz Repetition-Rate Sweeping Range
Conventional electro-optic (EO) combs are known for their repetition-rate agility. However, due to a nonzero time delay between the driving signals for the cascaded phase and intensity modulators, such systems can rarely withstand multi-GHz tuning range while maintaining high-quality temporal shapes. In this letter, we establish that a diminishing modulator delay time is the single most important factor impacting the repetition-rate sweeping performance of a short-pulsed EO comb. By reducing the modulator delay time to zero, we demonstrate an EO comb that is capable of frequency sweeping across an ultrabroad frequency span (6-10 GHz) while consistently outputting high-quality $\sim ~5$ ps pulses. Importantly, the ‘zero modulator delay time’ strategy inherently ensures phase matching for all frequencies and the limitation on sweeping speed is completely eliminated. The pulse duration and temporal shape are highly stable and reproducible, and the timing jitters are under 125 fs for all repetition rates within the tuning range. We also demonstrate wavelength-agility in such a system, by tuning the center wavelength of the seed semiconductor laser from 1535 to 1565 nm. Across the tuning range, optical signal-to-noise ratios of over 40 dB are achieved. This simple approach provides an effective solution for stabilizing the pulse duration for EO combs and may find applications in asynchronous optical sampling or other time-resolved experiments.
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来源期刊
IEEE Photonics Technology Letters
IEEE Photonics Technology Letters 工程技术-工程:电子与电气
CiteScore
5.00
自引率
3.80%
发文量
404
审稿时长
2.0 months
期刊介绍: IEEE Photonics Technology Letters addresses all aspects of the IEEE Photonics Society Constitutional Field of Interest with emphasis on photonic/lightwave components and applications, laser physics and systems and laser/electro-optics technology. Examples of subject areas for the above areas of concentration are integrated optic and optoelectronic devices, high-power laser arrays (e.g. diode, CO2), free electron lasers, solid, state lasers, laser materials'' interactions and femtosecond laser techniques. The letters journal publishes engineering, applied physics and physics oriented papers. Emphasis is on rapid publication of timely manuscripts. A goal is to provide a focal point of quality engineering-oriented papers in the electro-optics field not found in other rapid-publication journals.
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