4.7 Article

Yb3+:(LuxY1-x)2O3 mixed sesquioxide ceramics for laser applications. Part II: Laser performances

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 853, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2020.156943

关键词

Yb:(Lu,Y)(2)O-3; Transparent ceramics; Microstructure; Lasers; Nanoparticles

资金

  1. National Research Council (CNR), Italy (CNR Project) [SAC.AD002.020.016]
  2. Russian Foundation for Basic Research (RFBR), Russia 2018-2020 (RFBR Grant) [18-53-7815 Ital_t]
  3. RFBR, Russia [18-03-00649 A]

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The laser performances of Yb3+-doped mixed sesquioxide ceramics, (LuxY(1-x))(2)O-3, with x values of 0.113 and 0.232, were studied under semiconductor laser pumping. The maximum slope efficiency obtained was 68.1% in quasi-CW emission regime, with a tuning range from 994 to 1089 nm for x = 0.113. Additionally, a maximum slope efficiency of 74% (optical conversion efficiency 68.3%) was achieved for Yb:Y2O3 ceramics, one of the highest reported for ceramic Yb:Y2O3.
We studied the laser performances of a new family of Yb3+-doped mixed sesquioxide ceramics, (LuxY(1-x))(2)O-3 with x = 0.113 and 0.232, fabricated by vacuum sintering of nano-sized particles synthesized by CO2 laser co-evaporation of solid targets with different Y/Lu balance. Their microstructural and spectroscopic properties were reported in details in a companion paper. We report the results of the laser emission performances (slope efficiency, output power and tuning range) under semiconductor laser pumping. A comparison of the performance with a 5.6 at% Yb:Y2O3 ceramics fabricated with the same method is reported. A maximum slope efficiency of 68.1% was obtained in quasi-CW emission regime from the sample with x = 0.113, with a wavelength tunability range from 994 to 1089 nm full width (i.e. 95 nm). Moreover, from the sample with Yb:Y2O3 composition we obtained a maximum slope efficiency of 74% (optical conversion efficiency 68.3%), among the highest ever reported for ceramic Yb:Y2O3. This is the first extensive characterization of the laser performances of the Yb:(Y,Lu)(2)O-3 composition in ceramic hosts. (C) 2020 Published by Elsevier B.V.

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