DocumentCode :
61805
Title :
Spectroscopic Characteristics and Laser Performance of {\\rm Nd}{:}{\\rm Y}_{1.8}{\\rm La}_{0.2}{\\rm O}_{3} Transparent Ceramics
Author :
Shenzhou Lu ; Qiuhong Yang ; Haojia Zhang ; Yonggang Wang ; Dongdong Huang ; Qing Wang ; Zhiyi Wei
Author_Institution :
Sch. of Mater. Sci. & Eng., Shanghai Univ., Shanghai, China
Volume :
49
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
293
Lastpage :
300
Abstract :
(NdxY0.9-xLa0.1)2O3 (x=0.005-0.04) transparent ceramics were fabricated by conventional solid-state processing. The radiative spectral properties of the ceramic samples were evaluated by fitting the Judd-Ofelt model with the absorption and emission data. (NdxY0.9-xLa0.1)2O3 ceramics have broad absorption and emission bands with a radiative decay time of 328 μs. The absorption cross section at 806 nm and stimulated emission cross section at 1078 nm are calculated to be 1.53 ×10-20 and 5.22 × 10-20 cm2, respectively. The product of quantum efficiency and the ionic concentration (ηN) exhibited a peak value at 1.5 at% Nd3+ ion concentration, while the lifetime decreases dramatically from 300 μs (0.5 at% Nd) to 49 μs (4.0 at% Nd). With 1.0 at% Nd:Y1.8La0.2O3 ceramics acting as a laser medium, continuous-wave output power of 1.03 W was obtained at 1079.5 nm under an absorbed pump power of 7.2 W, corresponding to a slope efficiency of 18.4%.
Keywords :
Judd-Ofelt theory; ceramics; fluorescence; infrared spectra; laser materials processing; nanofabrication; nanoparticles; neodymium compounds; stimulated emission; transparency; ultraviolet spectra; visible spectra; yttrium compounds; (NdxY0.9-xLa0.1)2O3; Judd-Ofelt model; UV-visible-near infrared spectra; absorbed pump power; absorption cross-section; continuous-wave output power; conventional solid-state processing; fluorescence; ionic concentration; laser performance; nanopowders; power 1.03 W; power 7.2 W; quantum efficiency; radiative decay time; radiative spectral properties; spectroscopic characteristic; stimulated emission cross-section; time 328 mus; transparent ceramics; wavelength 806 nm; Absorption; Ceramics; Ions; Optical pumping; Oscillators; Pump lasers; ${rm Nd}{:}{rm Y}_{18}{rm La}_{02}{rm O}_{3}$; emission cross section; laser oscillation; quantum efficiency; transparent ceramics;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2012.2226235
Filename :
6338996
Link To Document :
بازگشت