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Iron--doped zinc selenide: Spectroscopy and laser development.

机译:铁掺杂硒化锌:光谱学和激光显影。

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摘要

We examine the quantum mechanics of optically active ions in crystals. Insight is developed which qualitatively explains the shape of the optical absorption and emission spectra of Fe2+ ions in II-VI materials. In addition to a discussion of the relevant theory, this work explores experimental techniques for absorption spectroscopy, laser-induced fluorescence spectroscopy, and upper-state lifetime measurements in detail. The data collected from these experiments are interpreted in the context of the theories developed herein. The theory and data are used to develop a simple model of the temperature dependence of the upper-state lifetime of Fe2+ ions in ZnSe.;We report the demonstration of high-power continuous wave laser oscillation from Fe2+ ions in zinc selenide in detail. Broadband wavelength tuning of an Fe:ZnSe laser is demonstrated using spectrally selective intracavity optics. Additionally, several resonator configurations were briefly tested with the significant result that >1 W power was achieved near 4100 nm..;We report the use of pulsewidth modulation techniques to deliver short, highpeak-power pulses from an Fe:ZnSe laser. The first passively Q-switched Fe:ZnSe laser was successfully demonstrated with average power >600 mW and with pulse widths <60 ns. Additionally, the first modelocked Fe:ZnSe laser was successfully demonstrated with average power of ~200 mW..
机译:我们研究了晶体中光学活性离子的量子力学。开发了洞察力,定性地解释了II-VI材料中Fe2 +离子的光吸收和发射光谱的形状。除了对相关理论的讨论之外,这项工作还探索了吸收光谱,激光诱导荧光光谱和上位寿命测量的实验技术。从这些实验中收集的数据在本文开发的理论中得到了解释。理论和数据被用于建立一个简单的模型,该模型对ZnSe中Fe2 +离子的上态寿命具有温度依赖性。;我们详细报道了硒化锌中Fe2 +离子的高功率连续波激光振荡的演示。 Fe:ZnSe激光器的宽带波长调谐通过光谱选择性腔内光学器件进行了演示。此外,还简要测试了几种谐振器配置,得出的显着结果是,在4100 nm附近获得了> 1 W的功率。.;我们报道了使用脉宽调制技术从Fe:ZnSe激光器发出短的高峰值功率脉冲。第一个无源调Q的Fe:ZnSe激光器被成功演示,其平均功率> 600 mW,脉冲宽度<60 ns。此外,第一台锁模的Fe:ZnSe激光器被成功证明具有约200 mW的平均功率。

著录项

  • 作者

    Evans, Jonathan W.;

  • 作者单位

    Air Force Institute of Technology.;

  • 授予单位 Air Force Institute of Technology.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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