DocumentCode
2906760
Title
Comparison of γ and β-ray irradiation effects in sol-gel Ge-doped SiO2
Author
Alessi, A. ; Agnello, S. ; Gelardi, F.M. ; Sporea, D.G. ; Oproiu, C. ; Brichard, B.
Author_Institution
Dept. of Phys. & Astron. Sci., Univ. of Palermo, Palermo, Italy
fYear
2009
fDate
14-18 Sept. 2009
Firstpage
286
Lastpage
289
Abstract
We report an experimental study on the comparison between the γ or β ray induced Ge related point defects in Ge doped silica. Silica samples doped with ~2.2 1017 Ge atoms/cm3 produced with the sol-gel technique have been irradiated. The effects of the irradiation have been investigated by optical absorption, photoluminescence and electron paramagnetic resonance spectroscopy in order to evaluate the generation and the dependence on dose of the Ge(1), E´Ge, Germanium Lone Pair Center (GLPC) and H(II) point defects. No relevant differences between the concentrations of γ or β ray induced Ge(1) and E´Ge point defects have been observed. In addition, it is found that both irradiations are able to induce GLPC with the same dose dependence. The main difference regards the formation of H(II), that arise from the reaction of GLPC with H released by irradiation, their concentration being larger after γ irradiation. It is suggested that the larger efficiency of H(II) generation by γ ray is due to the specific mechanism involving H released by irradiation. At variance, for the other Ge-related defects, our data show that the same processes of formation of such centers are involved in γ or β ray irradiation.
Keywords
beta-ray effects; doping; gamma-ray effects; germanium; glass; infrared spectra; optical materials; paramagnetic resonance; photoluminescence; point defects; silicon compounds; sol-gel processing; visible spectra; β-ray irradiation effect; γ-ray irradiation effect; E´Ge point defect; GLPC; SiO2:Ge; electron paramagnetic resonance spectroscopy; germanium lone pair center; germanium-doped silica; optical absorption; photoluminescence; point defects; sol-gel technique; Absorption; Glass; Optical fibers; Radiation effects; Silicon compounds; glass; optical fiber materials; optical spectroscopy; radiation effects;
fLanguage
English
Publisher
ieee
Conference_Titel
Radiation and Its Effects on Components and Systems (RADECS), 2009 European Conference on
Conference_Location
Bruges
ISSN
0379-6566
Print_ISBN
978-1-4577-0492-5
Electronic_ISBN
0379-6566
Type
conf
DOI
10.1109/RADECS.2009.5994660
Filename
5994660
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