Radiation trapping in selected Er 3+ doped chalcogenide glasses and the extraction of the nonradiative lifetime

  • Koughia C
  • Craig C
  • Hewak D
  • et al.
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Abstract

© 2019 Optical Society of America. Radiation trapping (RT) is a phenomenon wherein photons are emitted, absorbed and re-emitted many times before they leave the volume of the material. Trivalent Er3+ ions are particularly prone to RT because there is a whole set of strongly overlapping emission and absorption bands including 4I13/2-4I15/2 and 4I11/2-4I15/2 bands. The effect of RT on the PL decay time was investigated experimentally in this work in a variety of Er3+-doped GeGaS, GeGaSe, GaLaS(O) glasses. Sample geometry (powders, plates, disks, cylinders) and size were varied and the samples were also immersed in glycol, a liquid with high refractive index. PL decay times were measured and compared with the Judd-Ofelt results. A simple model of RT was developed and applied to the above mentioned bands. By comparing model conclusions with experimental data for different sample sizes, we were able to separate the direct relaxation of the 4I11/2 state to ground 4I15/2 state and relaxation via the intermediate 4I13/2 state; and hence obtain an approximate nonradiative lifetime.

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Koughia, C., Craig, C., Hewak, D. W., & Kasap, S. (2019). Radiation trapping in selected Er 3+ doped chalcogenide glasses and the extraction of the nonradiative lifetime. Optical Materials Express, 9(5), 2368. https://doi.org/10.1364/ome.9.002368

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