4.7 Article

Continuously tuned (Tm0.05Sc0.252Y0.698)2O3 ceramic laser with emission peak at 2076 nm

Journal

JOURNAL OF ALLOYS AND COMPOUNDS
Volume 889, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2021.161585

Keywords

Tm; (ScxY1-x)(2)O-3; Thulium lasing properties; Tm-based transparent ceramics; Low temperature absorption spectra; Optical properties

Funding

  1. Joint Bilateral Agreement National Research Council (CNR), Italy/Russian Foundation for Basic Research (RFBR), Russia [18-53-7815 Ital_t, SAC.AD002.020.016]

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In this study, the first laser action of a (Tm0.05Sc0.252Y0.698)2O3 ceramic sample was reported, achieving an output power of 1.24 W at 2076 nm when pumped at 793 nm. Absorption spectra at various temperatures were measured, with absorption coefficients and emission cross sections calculated accordingly. The ceramic material showed a tuning range of 181 nm.
We report on the first laser action of a (Tm0.05Sc0.252Y0.698)2O3 ceramic sample, which was made by solidstate vacuum sintering of laser-ablated mixed sesquioxide nanoparticles. Pumped at 793 nm in quasi-CW mode, it delivers 1.24 W with a slope efficiency of 9.45% at 2076 nm. We have measured the absorption spectra at several temperatures, from 93 K to 293 K, calculating the absorption coefficients by Lambert-Beer formula. Moreover, emission cross sections were calculated by Fuchtbauer-Ladenburg starting from the fluorescence spectra measured at room temperature. Spectroscopic data where compared with those obtained by (Tm0.05Y0.95)2O3 fabricated with the same method. Finally, the ceramic tunability was explored finding a tuning range as broad as 181 nm (from 1927.5 nm to 2108.5 nm). (c) 2021 Published by Elsevier B.V.

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