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A Comprehensive Characterization of a 10 at.% Yb: YSAG Laser Ceramic Sample

Academic Article
Publication Date:
2018
abstract:
We report a comprehensive characterization of a 10 at.% Yb3+-doped YSAG (Yb:Y3ScxAl(5-x)O12, x = 1.5) ceramic, including microstructural, spectroscopic and laser properties. Moreover, we illustrate and discuss the fabrication technique. Yb3+ in YSAG features a broader absorption and emission band than in traditional YAG, which is advantageous for laser applications (i.e., tunable laser sources, ultrafast pulse generation). Pumping in a quasi continuous wave regime at 936 nm, the ceramic has shown good laser performance as the maximum output power was 6.3 W with a corresponding slope efficiency (eta(s)) of 67.8%. In continuous wave regime instead, the maximum output power was 5 W with eta(s) = 52.7%. The laser emission wavelengths in free running were lambda(L) = 1051 nm and lambda(L) = 1031 nm, depending on the output coupler transmission. Finally, by a tunable cavity we obtained laser emission spanning from 991.5 to 1073 nm, i.e., 81.5 nm, which is the broadest tuning range ever reported for this material, to the best of our knowledge.
Iris type:
01.01 Articolo in rivista
Keywords:
transparent laser ceramic; ytterbium-doped laser ceramics; diode-pumped solid-state laser; tunable laser cavity
List of contributors:
Toci, Guido; Pirri, Angela; Patrizi, Barbara; Vannini, Matteo
Authors of the University:
PATRIZI BARBARA
PIRRI ANGELA
TOCI GUIDO
Handle:
https://iris.cnr.it/handle/20.500.14243/345377
Published in:
MATERIALS
Journal
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URL

https://www.mdpi.com/1996-1944/11/5/837
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