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Control and characterization of phase-modulated continuous-wave laser frequency combs.

机译:相位调制连续波激光频率梳的控制和表征。

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摘要

Spectral line-by-line shaping is a key enabler towards optical arbitrary waveform generation, which promises broad impact both in optical science and technology. Significant new physics arises in the line-by-line regime, where the shaped pulse fields generated from one laser pulse now overlap with those generated from adjacent pulses. This leads to coherent interference effects related to the properties of optical frequency combs which serve as the source in these experiments.;Phase-modulated continuous--wave (PMCW) laser frequency combs are chosen as the optical source within this dissertation for their relatively high frequency stability and ease of tuning. We experimentally demonstrate the followings: (1) 300 fs optical pulse train generations at 9 and 10 GHz rates by applying line-by-line control to PMCW combs. (2) 5 GHz optical arbitrary waveform generations using more than 100 comb lines. (3) Generations of reprogrammable microwave arbitrary waveforms at rates approaching 10 GHz. (4) Generation of nonlinearly broadened optical frequency combs from PMCW seed pulses using both anomalous and normally dispersive media. Broadened comb coherence properties are further analyzed using differential phase-shift keying decoding. (5) Quantitative analysis on the impact of static comb frequency stability on line-by-line shaped waveforms. (6) Systematic investigations on time-varying comb frequency-noise to intensity-noise conversion in line-by-line shaping.
机译:逐行频谱整形是产生光学任意波形的关键因素,这有望在光学科学和技术中产生广泛的影响。逐行方式产生了重要的新物理学,其中从一个激光脉冲产生的成形脉冲场现在与从相邻脉冲产生的脉冲场重叠。这导致了与光学频率梳特性有关的相干干扰效应,这些特性在这些实验中充当光源。;本文选择了相调制连续波(PMCW)激光频率梳作为光源,因为它们相对较高频率稳定且易于调整。我们通过实验证明了以下内容:(1)通过对PMCW梳进行逐行控制,以9 GHz和10 GHz速率产生300 fs的光脉冲串。 (2)使用100条以上的梳齿线产生5 GHz光学任意波形。 (3)以接近10 GHz的速率生成可重编程的微波任意波形。 (4)使用异常介质和正常色散介质从PMCW种子脉冲生成非线性展宽的光频率梳。使用差分相移键控解码进一步分析了扩展的梳状相干特性。 (5)定量分析静态梳齿频率稳定性对逐行波形的影响。 (6)对逐行整形时变梳齿频率-强度噪声转换的系统研究。

著录项

  • 作者

    Huang, Chen-Bin.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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