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Development and implementation of near-infrared ultrafast laser sources generated by nonlinear fiber propagation.

机译:非线性光纤传播产生的近红外超快激光源的开发和实现。

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摘要

This dissertation is broken up into three parts: (I) generating high-quality ultrafast pulses around 1060 nm, (II) using the pulses from part (I) to generate pulses around 1300 nm, and (III) analyzing newly developed experimental theories and methods utilizing these pulses for linear and nonlinear microscopy. The majority of the work in this dissertation is choreographing the dance between nonlinear spectral broadening in optical fiber and the associated complexity in accumulated spectral phase. We have developed and employed several systems which manage to accomplish this task quite elegantly due to our technological contributions, producing high-quality pulses with high oscillator-type pulse energies both at 1060 and 1250 nm. In addition to developing some theory and techniques extending current types of nonlinear microscopy, we have as a capstone an experimental microscope cascading several of our primary source and application technologies to conduct an entirely new form of spectroscopic absorption imaging.
机译:本论文分为三个部分:(I)产生1060 nm附近的高质量超快脉冲,(II)使用来自(I)部分的脉冲产生1300 nm附近的脉冲,以及(III)分析新近开发的实验理论和这些脉冲用于线性和非线性显微镜的方法。本文的大部分工作是编排光纤非线性光谱展宽与累积光谱相位相关复杂性之间的关系。由于我们的技术贡献,我们已经开发并采用了多个系统,可以非常完美地完成此任务,从而在1060和1250 nm处产生具有高振荡器型脉冲能量的高质量脉冲。除了开发一些扩展当前非线性显微镜类型的理论和技术外,我们还拥有一台实验显微镜,它是级联几种主要光源和应用技术以进行全新形式的光谱吸收成像的实验基础。

著录项

  • 作者

    Domingue, Scott R.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Optics.;Electrical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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