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FLUORESCENCE LINE NARROWING IN YTTERBIUM DOPED INORGANIC GLASSES.

机译:掺OPE无机玻璃中的荧光线窄头。

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摘要

This dissertation is a study of energy transfer and dephasing of optical excitations in amorphous materials as exemplified by Yb('3+) ions in inorganic glasses. This rare earth ion has a number of properties which make it ideal for such studies. The Stark splitting within the ground and excited state manifolds is large enough to overcome the inhomogeneous broadening of the optical transitions, so that narrowband optical pumping results in a well defined set of excited ions. The simple spectrum of energy levels, consisting of a single excited state manifold, precludes processes such as cross relaxation and multiphonon decay, which compete with the fundamental energy transfer and dephasing interactions.;We have used this laser system together with a Fabry-Perot etalon spectrometer to measure the homogeneous linewidth of the ('2)F(,5/2)(1)-('2)F(,7/2)(1) transition of Yb('3+) from 70 to 6K in silicate and phosphate glasses. In contrast to the behavior observed in other rare earth doped glass systems, the temperature dependence of the homogeneous width of this transition changes from T('1.8) at high temperatures to T('1.4) below 40K. The low temperature behavior is consistent with an interaction between the dipole moment of the Yb('3+) ions and elastic perturbations of the amorphous lattice caused by phonon induced tunneling of two level systems. At higher temperatures a Raman process dominates the dephasing, as observed in other rare earth ions.;Energy transfer measurements were made using single channel photon counting techniques and a computer controlled data acquisition system. The results of these measurements indicate a one phonon assisted transfer process is responsible for the energy transfer, with the distance dependence of the coupling between ions roughly consistent with a quadrupole-quadrupole interaction.;Ytterbium systems has not been widely studied in the past due to the location of the excited state manifold at (TURN)10,000 (ANGSTROM), which is beyond the range of stable and efficient laser dyes and detectors. We have developed a unique narrowband high power pulsed color center laser to carry out high resolution time resolved fluorescence line narrowing (FLN) in Yb('3+) doped silicate and phosphate glasses.
机译:本文以无机玻璃中的Yb('3+)离子为例,对非晶态材料中的能量转移和光激发的相移进行了研究。这种稀土离子具有许多特性,使其非常适合此类研究。基态和激发态歧管内的Stark分裂足够大,足以克服光学跃迁的不均匀展宽,因此窄带光学泵浦会产生一组定义明确的激发离子。能级的简单光谱由单个激发态流形组成,排除了诸如交叉弛豫和多声子衰减之类的过程,这些过程与基本的能量传递和相移相互作用相竞争;我们已经将该激光系统与Fabry-Perot校准器一起使用光谱仪测量Yb('3+)从(70)到6K的('2)F(,5/2)(1)-('2)F(,7/2)(1)跃迁的均匀线宽硅酸盐和磷酸盐玻璃。与在其他稀土掺杂玻璃系统中观察到的行为相反,此过渡的均匀宽度的温度依赖性从高温下的T('1.8)变为40K以下的T('1.4)。低温行为与Yb('3+)离子的偶极矩与声子诱导的两能级隧穿引起的非晶晶格的弹性摄动之间的相互作用一致。如在其他稀土离子中观察到的,在较高的温度下,拉曼过程占主导地位。使用单通道光子计数技术和计算机控制的数据采集系统进行能量转移测量。这些测量的结果表明,一个声子辅助的转移过程负责能量的转移,离子之间的耦合的距离依赖性与四极-四极相互作用大致相符。激发态流形的位置在(TURN)10,000(ANGSTROM),这超出了稳定高效的激光染料和检测器的范围。我们开发了独特的窄带高功率脉冲色心激光器,以在掺Yb('3+)的硅酸盐和磷酸盐玻璃中进行高分辨率的时间分辨荧光线变窄(FLN)。

著录项

  • 作者

    BRUNDAGE, RICHARD THOMAS.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Condensed matter physics.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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