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Frequency-scanned microresonator soliton comb with tracking of the frequency of all comb modes

机译:频率扫描的微谐振器孤子梳状跟踪所有梳状模式的频率

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摘要

Rapid and large scanning of a dissipative Kerr-microresonator soliton comb with characterization of all comb modes along with the separation of the comb modes is imperative for the emerging applications of frequency-scanned soliton combs. However, the scan speed is limited by the gain of feedback systems, and measurement of the frequency shift of all comb modes has not been demonstrated. To overcome the limitation of the feedback, we incorporate feedback with feedforward. With an additional gain of >40 dB by a feedforward signal, a dissipative Kerr-microresonator soliton comb is scanned by 70 GHz in 500 mu s, 50 GHz in 125 mu s, and 25 GHz in 50 mu s (= 500 THz/s). Furthermore, we propose and demonstrate a method to measure the frequency shift of all comb modes, in which an imbalanced Mach-Zehnder interferometer with two outputs with different wavelengths is used. Because of the two degrees of freedom of optical frequency combs, the measurement at two different wavelengths enables estimation of the frequency shift of all comb modes. (C) 2021 Optical Society of America.
机译:在频率扫描孤子梳的新兴应用中,快速、大范围地扫描耗散克尔微谐振器孤子梳,并对所有梳模进行表征,同时分离梳模是必不可少的。然而,扫描速度受到反馈系统增益的限制,所有梳状模式的频移测量尚未得到证实。为了克服反馈的局限性,我们将反馈与前馈结合起来。在前馈信号的额外增益大于40 dB的情况下,耗散克尔微谐振器孤子梳在500μs内扫描70 GHz,在125μs内扫描50 GHz,在50μs(=500太赫兹/秒)内扫描25 GHz。此外,我们还提出并演示了一种测量所有梳状模频移的方法,其中使用了具有两个不同波长输出的不平衡马赫-曾德尔干涉仪。由于光学频率梳具有两个自由度,因此在两个不同波长下进行测量可以估计所有频率梳模式的频率偏移。(2021)美国光学学会。

著录项

  • 来源
    《Optics Letters》 |2021年第14期|共4页
  • 作者单位

    Tokushima Univ Inst PostLED Photon 2-1 Minami Josanjima Tokushima Tokushima 7708506 Japan;

    LIGENTEC SA EPFL Innovat Pk L Chemin Dent dOche 1B CH-1024 Ecublens Switzerland;

    LIGENTEC SA EPFL Innovat Pk L Chemin Dent dOche 1B CH-1024 Ecublens Switzerland;

    Tokushima Univ Inst PostLED Photon 2-1 Minami Josanjima Tokushima Tokushima 7708506 Japan;

    Tokushima Univ Inst PostLED Photon 2-1 Minami Josanjima Tokushima Tokushima 7708506 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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