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High power pulsed fiber lasers at near-IR optical wavelengths.

机译:近红外光波长的高功率脉冲光纤激光器。

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摘要

Among fiber-based lasers, the availability of high energy and high peak-power pulsed sources is of critical importance for a variety of application ranging from remote sensing, material processing to laser-plasma EUV generation. For most of the applications, high average-power is required in preferably diffraction-limited beams. In this dissertation, we demonstrate usage of very large-mode-area (LMA) fibers to significantly exceed fundamental pulse energy and peak-power limitations of standard single-mode fibers and explore the limit of core size scaling in LMA fibers. We show systematic studies in both theoretical modeling and experimental characterization of beam quality control in extremely large core LMA fibers, including coiling induced higher-order-mode filtering effect in low numerical aperture (NA) Yb-doped fiber amplifiers and fundamental mode excitation in high NA Er-doped fiber amplifiers. We report achieving good beam qualities (M2∼1.3) in 80-mum Yb-doped and 70-mum Er-doped fiber amplifiers, corresponding to the largest mode diameters of conventional step-index LMA fibers with nearly diffraction-limited output for applications at ∼1-mum and ∼1.55mum wavelengths, respectively.; Large core size ensures higher energy extraction and increases thresholds for the onset of optical damage and detrimental nonlinear effects. We demonstrate in this work that millijoule energies and megawatt peak-powers in nanosecond pulses can be achieved in nearly diffraction-limited beam using 80-mum core Yb-doped fiber amplifier, and also show the average-power scalability of this pulsed fiber laser up to 85-W. Comparable pulse energies and peak-powers are believed to be achievable in 70-mum core Er-doped fiber amplifier for applications at ∼1.55-mum wavelength. Here, we report demonstration of average-power scaling of nanosecond and ultrashort pulsed fiber lasers using 25-mum core Er/Yb co-doped fiber amplifier. In particular, high average-power (∼28-W) ultrashort (∼1.4-ps) pulsed fiber laser was realized in fiber-based chirped pulse amplification (FCPA) system using novel chirped volume Bragg grating (CVBG) pulse stretchers/compressors. These results indicate that fiber laser technology has significant potential of replacing conventional pulsed solid-state lasers and is a better alternative for applications that require high average-powers.
机译:在基于光纤的激光器中,高能量和高峰值功率脉冲源的可用性对于从遥感,材料加工到激光等离子EUV产生的各种应用至关重要。对于大多数应用,最好在衍射极限光束中要求高平均功率。在本文中,我们演示了使用超大面积光纤(LMA)来显着超过标准单模光纤的基本脉冲能量和峰值功率限制,并探讨了LMA光纤纤芯尺寸缩放的限制。我们在超大型芯LMA光纤的光束质量控制的理论模型和实验表征中都进行了系统的研究,包括在低数值孔径(NA)掺Yb的光纤放大器中盘绕引起的高阶模滤波效应以及在高数值孔径的光纤中的基模激励NA掺Er光纤放大器。我们报告说,在80微米掺Yb和70微米掺Er的光纤放大器中实现了良好的光束质量(M2〜1.3),对应于常规阶跃折射率LMA光纤的最大模直径,其输出几乎受到衍射限制,适用于在分别为〜1μm和〜1.55μm的波长。大铁芯尺寸确保了更高的能量提取效率,并增加了光学损伤和有害非线性效应发作的阈值。我们在这项工作中证明,使用80微米纤芯掺Yb的光纤放大器,可以在几乎衍射极限的光束中获得纳秒级脉冲中的毫焦耳能量和兆瓦级峰值功率,并且还展示了这种脉冲光纤激光器的平均功率可扩展性到85瓦。据信在70微米纤芯掺Er的光纤放大器中可实现可比较的脉冲能量和峰值功率,适用于波长为1.55微米的应用。在这里,我们报告了使用25微米核心Er / Yb共掺杂光纤放大器对纳秒级和超短脉冲光纤激光器进行平均功率缩放的演示。特别是,在使用新型chi体积布拉格光栅(CVBG)脉冲展宽器/压缩器的基于光纤的chi脉冲放大(FCPA)系统中,实现了高平均功率(〜28 W)超短(〜1.4 ps)脉冲光纤激光器。这些结果表明,光纤激光器技术具有取代常规脉冲固态激光器的巨大潜力,并且是要求高平均功率的应用的更好替代方案。

著录项

  • 作者

    Cheng, Ming-Yuan.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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