DocumentCode :
2502688
Title :
Nano-engineered glass based optical fiber for fiber laser
Author :
Paul, Manoranjan ; Kir´yanov, Alexander ; Das, S. ; Pal, Monalisa ; Bhadra, S. ; Barmenkov, Yu.O. ; Martinez-Gamez, A. ; Martinez, Jose Luis ; Yoo, Sang-Im ; Sahu, Jayanta
Author_Institution :
Optoelectron. Res. Centre, Univ. of Southampton, Southampton, UK
fYear :
2012
fDate :
1-3 Oct. 2012
Firstpage :
187
Lastpage :
191
Abstract :
We have developed the technology for making of dielectric nano-particles doped nano-engineered glass based optical fibers. Two kinds of dielectric nano-particles (DNP) containing silica glass based Yb2O3 doped fibers are made successfully through solution doping (SD) technique. One: Yb2O3 doped yttria-rich alumino-silica nano-particles based optical fiber developed during drawing of D-shaped low RI resin coated large mode area (LMA) optical fiber from the modified preform which annealed at 1450-1550°C for 3 hours under heating and cooling rates of 20°C/min and other: Yb2O3 doped zirconia-germanium-alumino (ZGA) rich yttria-silica nano-particles based optical fibers developed during drawing of normal RI coated single mode optical fiber from the modified preform which annealed at 1000-1100°C for 3 hours under heating and cooling rates of 20°C/min. Fabrication of Yb2O3 doped yttria-rich alumino-silica nano-particles based D-shaped low RI coated large core optical fibers having core diameter around 20.0-30.0 micron was made. The size of DNP nano-particles was maintained within 5-10 nm under doping of 0.20 mole% of fluorine. The start fiber preforms are studied by means of EPMA, EDX, and electron diffraction analyses, revealing phase-separated nano-sized ytterbium-rich areas in their cores. There is a great need to engineer the composition as well as doping levels of different elements within the core glass during the preform making stages to generate phase-separated Yb2O3 doped DNP nano particles in the fiber. The matter concentrates on making of Yb2O3 doped DNP containing optical fibers along with material characterizations, study of spectroscopic properties, photo-darkening phenomena and lasing characteristics. Such kind of nano-engineered glass based optical fibers shows good lasing efficiency with improv- d photodarkening phenomena compared to the standard silica glass based fiber.
Keywords :
X-ray chemical analysis; aluminium; annealing; electron diffraction; fibre lasers; germanium; nanoparticles; optical glass; photochromism; silicon compounds; ytterbium compounds; yttrium compounds; zirconium compounds; D-shaped low RI resin; EDX; EPMA; Y2O3-SiO2:Yb2O3; ZrO2-Ge-Al:Yb2O3; annealing; coated large mode area; dielectric nanoparticles; doped fibers; doped nanoengineered glass; doped yttria-rich alumino-silica nanoparticles; doped zirconia-germanium-alumino; electron diffraction; fiber laser; optical fiber; phase-separated nanosized ytterbium-rich areas; photodarkening phenomena; silica glass; solution doping; spectroscopic properties; temperature 1000 degC to 1100 degC; temperature 1450 degC to 1550 degC; time 3 hour; Annealing; Doping; Glass; Optical fibers; Photochromism; Preforms; Silicon compounds;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photonics (ICP), 2012 IEEE 3rd International Conference on
Conference_Location :
Penang
Print_ISBN :
978-1-4673-1461-9
Type :
conf
DOI :
10.1109/ICP.2012.6379894
Filename :
6379894
Link To Document :
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