DocumentCode :
1079381
Title :
Thermal and Optical Properties of Yb3+- and Nd3+-Doped Phosphate Glasses Determined by Thermal Lens Technique
Author :
Messias, Djalmir N. ; Jacinto, Carlos ; Bell, Maria Jose V ; Catunda, Tomaz
Author_Institution :
Univ. Fed. de Uberlandia, Uberlandia-MG
Volume :
43
Issue :
9
fYear :
2007
Firstpage :
751
Lastpage :
757
Abstract :
In this work, we study the thermal and optical properties of ion-doped phosphates glasses using the thermal lens (TL) technique. Three samples were characterized: Nd3+-doped Q-98; Nd3+-doped Q-100; and Yb3+-doped QX. We report multiwavelength TL measurements for a more accuracy determination of the fluorescence quantum efficiency and temperature coefficient of the optical path length change (ds/dT). In Nd-doped glasses, it was carried out using four discrete excitation wavelengths (between 514 and 872 nm) chosen to match with the ion absorption lines. In Yb-doped glass, the spectrum of heat generated along the Yb3+ transition (2 F 5/2rarr2 F 7/2) was obtained. In addition, parameters as thermal diffusivity and conductivity, thermal loading, etc were achieved. The advantages to obtain fluorescence quantum efficiency using the TL technique, mainly in Yb3+ doped materials, which are normally overestimated due to radiation trapping effect, are presented. The accuracy knowledge of these parameters is very important for design of high-power solid-state lasers, since these properties are directly related to the heat generation.
Keywords :
fluorescence; neodymium; optical glass; phosphate glasses; thermal conductivity; thermal diffusivity; thermal lensing; thermo-optical effects; ytterbium; fluorescence quantum efficiency; four discrete excitation wavelengths; multiwavelength measurements; optical properties; phosphate glasses; temperature coefficient; thermal conductivity; thermal diffusivity; thermal loading; thermal properties; Fluorescence; Glass; Length measurement; Lenses; Neodymium; Temperature; Thermal conductivity; Thermal lensing; Thermal loading; Wavelength measurement; Fluorescence quantum efficiency; laser materials; neodymium; thermal lensing; thermooptical properties; ytterbium;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2007.902381
Filename :
4280919
Link To Document :
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