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Article Dans Une Revue Optical Materials Année : 2018

Excited-state absorption and fluorescence dynamics of $Er^{3+}$:$KY_{3}$$F_{10}$

Résumé

We report here on a complete investigation of the excited-state absorption and fluorescence dynamics of $Er^{3+}$ doped $KY_{3}$$F_{10}$ single crystals versus dopant concentrations and optical excitation conditions. Radiative and effective (including non-radiative relaxations) emission lifetimes and branching ratios are determined from a Judd-Ofelt analysis of the absorption spectra and via specific fluorescence experiments using wavelength selective laser excitations. Excited-state absorption and emission spectra are registered within seven spectral domains, i.e. 560 nm, 650 nm, 710 nm, 810 nm, 970 nm, 1550 nm and 2750 nm. A maximum gain cross-section of 0.93 × $10^{−21}$ $cm^{2}$ is determined at the potential laser wavelength of 2.801 μm for a population ratio of 0.48. Saturation of fluorescence intensities and variations of population ratios versus pumping rates are registered and confronted with a rate equation model to derive the rates of the most important up-conversion and cross-relaxation energy transfers occurring at high dopant concentrations.
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Dates et versions

hal-01873053 , version 1 (12-09-2018)

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Citer

C. Labbé, J.L. Doualan, R. Moncorge, A. Braud, P. Camy. Excited-state absorption and fluorescence dynamics of $Er^{3+}$:$KY_{3}$$F_{10}$. Optical Materials, 2018, 79, pp.279 - 288. ⟨10.1016/j.optmat.2018.03.058⟩. ⟨hal-01873053⟩
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