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Crystal growth and near infrared optical properties of Pr 3+ doped lead halide materials for resonantly pumped eye safe laser applications.

机译:Pr 3+掺杂的卤化铅材料的晶体生长和近红外光学性质,用于共振泵浦对眼睛安全的激光应用。

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摘要

In this dissertation the material development and optical spectroscopy of Pr3+ activated low phonon energy halide crystals is presented for possible applications in resonantly pumped eye-safe solid-state laser gain media. In the last twenty years, the developments in fiber and diode lasers have enabled highly efficient resonant pumping of Pr3+ doped crystals for possible lasing in the 1.6--1.7 microm region. In this work, the results of the purification, crystal growth, and near-infrared (NIR) spectroscopic characterization of Pr3+ doped lead (II) chloride, PbCl2 and lead (II) bromide, PbBr2 are presented.;The investigated PbCl2 and PbBr2 crystals are non-hygroscopic with maximum phonon energies between ~180--200 cm-1, which enable efficient emission in the NIR spectral region (~ 1.6 microm) from the 3F3/3F4 → 3H4 transition of Pr3+ ions. The commercial available starting materials were purchased as ultra dry, high purity (~ 99.999 %) beads and purified through a combination of zone-refinement and halogenation. The crystal growth of Pr3+ doped PbCl 2 and PbBr2 was performed via vertical Bridgman technique using a two-zone furnace. The resulting Pr3+ doped PbCl 2 and PbBr2 crystals exhibited characteristic IR absorption bands in the 1.5--1.7 microm region (3H4 → 3F3/3F4), which allow for resonant pumping using commercial diode lasers. A broad IR emission band centered at ~1.6 microm was observed under ~1445 nm diode laser excitation from both Pr3+ doped halides.;This dissertation presents comparative spectroscopic results for Pr 3+:PbCl2 and Pr3+:PbBr2 including NIR absorption and emission studies, lifetime measurements, modelling of radiative and non-radiative decay rates, determination of transition cross-section, and the net effective gain cross sections.
机译:本文提出了Pr3 +活化的低声子能卤化物晶体的材料开发和光谱学研究,以期在共振泵浦对眼睛安全的固态激光增益介质中可能的应用。在过去的20年中,光纤和二极管激光器的发展使得对Pr3 +掺杂的晶体进行高效共振泵浦,从而可能在1.6--1.7微米范围内发射激光。在这项工作中,给出了Pr3 +掺杂的氯化铅(II),PbCl2和溴化铅(II),PbBr2的纯化,晶体生长和近红外(NIR)光谱表征的结果;研究的PbCl2和PbBr2晶体是非吸湿性的,最大声子能量在〜180--200 cm-1之间,可从Pr3 +离子的3F3 / 3F4→3H4跃迁在NIR光谱区域(〜1.6微米)内高效发射。购买的市售原料为超干,高纯度(〜99.999%)珠子,并通过区域精制和卤化相结合进行纯化。 Pr2 +掺杂的PbCl 2和PbBr2的晶体生长是使用​​两区炉通过垂直Bridgman技术进行的。所得的Pr3 +掺杂的PbCl 2和PbBr2晶体在1.5--1.7微米区域(3H4→3F3 / 3F4)表现出特征性IR吸收带,允许使用商用二极管激光器进行共振泵浦。在掺入Pr3 +的卤化物中,在〜1445 nm二极管激光激发下,观察到了宽于约1.6 microm的红外发射带。;本文提供了Pr 3+:PbCl2和Pr3 +:PbBr2的比较光谱结果,包括近红外吸收和发射研究,寿命测量,辐射和非辐射衰减率的建模,过渡截面的​​确定以及净有效增益截面。

著录项

  • 作者

    Jones, Ivy Krystal.;

  • 作者单位

    Hampton University.;

  • 授予单位 Hampton University.;
  • 学科 Optics.;Physics.;Materials science.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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