DocumentCode
2242813
Title
Defect center characteristics of silica optical fiber material by gamma ray radiation
Author
Luo, Wenyun ; Xiao, Zhongyin ; Wen, Jianxiang ; Yin, Jianchong ; Chen, Zhenyi ; Wang, Zihua ; Wang, Tingyun
Author_Institution
Key Lab. of Specialty Fiber Opt. & Opt. Access Networks, Shanghai Univ., Shanghai, China
fYear
2011
fDate
13-16 Nov. 2011
Firstpage
1
Lastpage
6
Abstract
Defect centers play a major role in the radiation-induced transmission loss for silica optical fibers. We have investigated characteristics of the best known defect centers E´ in silica optical fiber material irradiated with γ ray at room temperature, and measured by using electron spin resonance (ESR) and spectrophotometer. The results show that the defect concentrations increase linearly with radiation doses from 1kGy to 50kGy. We have established the mechanism models of radiation induced defect centers´ formation. We have also studied the influences of thermal annealing on defect centers. The radiation induced defect centers can be efficiently decreased by thermal annealing. Particularly, the defect concentration is less than the initial one when the temperature of thermal annealing is over 500°C for our silica samples. These phenomena can also be explained by the optical absorption spectra we have obtained.
Keywords
annealing; crystal defects; gamma-ray effects; infrared spectra; optical fibre losses; optical materials; paramagnetic resonance; silicon compounds; ultraviolet spectra; visible spectra; γ ray irradiation; ESR; SiO2; defect concentrations; electron spin resonance; gamma ray radiation; optical absorption spectra; radiation absorbed dose 1 kGy to 50 kGy; radiation doses; radiation induced defect center formation; radiation-induced transmission loss; silica optical fiber material; spectrophotometer; thennal annealing; Abstracts; Annealing; Mechanical variables measurement; γ ray radiation; E´ centers; optical absorption spectra; silica optical fiber material; thermal annealing;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications and Photonics Conference and Exhibition, 2011. ACP. Asia
Conference_Location
Shanghai
ISSN
2162-108X
Print_ISBN
978-0-8194-8961-6
Type
conf
DOI
10.1117/12.905302
Filename
6210652
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