Time-resolved site-selection spectroscopy investigation of Y3(Al1−xGax)5O12 : Nd3+ crystals
- 1 September 1979
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 50 (9) , 5930-5936
- https://doi.org/10.1063/1.326693
Abstract
We have used selective laser excitation techniques to investigate the spectroscopic properties of Nd3+ ions in Y3(Al1−xGax)5O12 crystals and found the mixed crystal nature of the host produced both distinct structure and inhomogeneous broadening in the Nd3+ spectra. We employed time‐resolved spectroscopy measurements to characterize energy transfer between Nd ions in nonequivalent crystal field sites and the results are consistent with the migration of energy among Nd ions in the dominant type of site with trapping occurring at Nd ions in defect sites. The migration and trapping processes require thermal activation and are consistent with a two‐phonon assisted energy transfer mechanism. The efficiency of energy transfer is greater in mixed crystals than in unmixed garnet hosts, and it is shown that this is associated with the increase in the transition matrix elements in the mixed crystals.This publication has 27 references indexed in Scilit:
- Concentration quenching in crystalsPhysical Review B, 1979
- Models for the time development of spectral transfer in disordered systemsPhysical Review B, 1978
- Laser site-selection spectroscopy investigation ofions in YVcrystalsPhysical Review B, 1978
- Dye laser spectroscopy of trivalent samarium in calcium tungstate crystalsJournal of Physics C: Solid State Physics, 1976
- New intermediate gain laser material: Y3(Al1−xGax)5O12 : NdJournal of Applied Physics, 1974
- Laser-selective excitation of Nd ions in mixed-crystal systemsOptics Communications, 1973
- New class of intermediate-gain laser materials: Mixed garnetsApplied Physics Letters, 1973
- Nd Ion Site Distribution and Spectral Line Broadening in YA1G: Lu, Nd Laser MaterialsJournal of Applied Physics, 1972
- Effects of Drift and Diffusion of Excited States on Spatial Hole Burning and Laser OscillationJournal of Applied Physics, 1971
- К ТЕОРИИ РЕЗОНАНСНОЙ МИГРАЦИИ ЭНЕРГИИ ВОЗ БУЖДЕНИЯ В ТВЕРДЫХ ТЕЛАХCzechoslovak Journal of Physics, 1955