Population dynamics in Er3+-doped fluoride glasses - art. no. 205107

Citation
Vk. Bogdanov et al., Population dynamics in Er3+-doped fluoride glasses - art. no. 205107, PHYS REV B, 6320(20), 2001, pp. 5107
Citations number
41
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
PHYSICAL REVIEW B
ISSN journal
01631829 → ACNP
Volume
6320
Issue
20
Year of publication
2001
Database
ISI
SICI code
0163-1829(20010515)6320:20<5107:PDIEFG>2.0.ZU;2-3
Abstract
A detailed study of the energy-transfer processes in Er3+: flouride glasses with doping concentrations of 0.2-18 mol % is presented. Fluorescence wave forms for 11 erbium transitions were measured under 802-nm, 1.5-mum, 975-n m, 520-nm, and 403-nm excitation from a high-energy short-pulse source. The analysis of these data provided a physical understanding of the processes responsible for the temporal behavior of the populations of a large number of energy levels. A comprehensive nine-level rate-equation model of the Er3 + population dynamics in these fluoride glasses is developed. The model per forms well in predicting the observed fluorescence behavior of the main flu orescing lines under all pumping conditions. The modeling process allowed 1 4 ion-ion energy-transfer processes that are important for the population d ynamics in these fluoride glasses to be identified and their rare constants obtained. Noticeably, the inclusion of seven three-ion processes was found necessary in order to obtain good fits to the experimental fluorescence wa ve forms. It was also found that some three-ion processes have a significan t effect on the population dynamics of the levels even in lower doping conc entrations.