DocumentCode :
1366745
Title :
Radiation-induced absorption and luminescence in specially hardened large-core silica optical fibers
Author :
Tomashu, A.L. ; Golant, K.M. ; Dianov, E.M. ; Medvedkov, O.I. ; Plaksin, O.A. ; Stepanov, V.A. ; Stepanov, P.A. ; Demenko, P.V. ; Chernov, V.M. ; Klyamkin, S.N.
Volume :
47
Issue :
3
fYear :
2000
fDate :
6/1/2000 12:00:00 AM
Firstpage :
693
Lastpage :
698
Abstract :
Radiation-induced absorption and luminescence are measured in the visible spectral region in H2-loaded and as-drawn fibers with KU and KS-4V silicas in the core in the process of γ-irradiation ( 60Co-source). The induced absorption in H2-loaded fibers is shown to be much lower than in as-drawn fibers, at least up to 1.2 MGy. A `blue´ band prevails in the luminescence spectra of all the fibers. Its intensity is greater in a KS-4V fiber than in a KU fiber. It is also somewhat greater in H2-loaded fibers than in unloaded ones, The luminescence lifetime in a KU fiber has been measured under excitation with a pulsed reactor to be 100 μs at λ=488 nm and 60 μs at λ=633 nm. It is concluded that the `blue´ radioluminescence cannot be attributed either to relaxation of the oxygen-deficient center or to Cerenkov emission. A fabrication technology of radiation-hardened H2-containing fibers with a hermetic aluminum coating is reported. Such fibers appear to be the best candidates for various applications in radiation environments
Keywords :
gamma-ray effects; hydrogen; light absorption; luminescence; optical fibre fabrication; optical fibres; silicon compounds; 488 to 633 nm; 60Co-source; Al; H2-loaded fibers; KS-4V silica; KU silica; SiO2; SiO2:H; as-drawn fiber; blue radioluminescence; fabrication technology; gamma irradiation; hermetic Al coating; large-core optical fibers; luminescence lifetime; luminescence spectra; radiation environment applications; radiation-hardened H2-containing fibers; radiation-induced absorption; radiation-induced luminescence; silica optical fibers; visible spectral region; Coatings; Electromagnetic wave absorption; Luminescence; Optical fiber sensors; Optical fibers; Optical sensors; Plasma applications; Pulse measurements; Radiation hardening; Silicon compounds;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.856500
Filename :
856500
Link To Document :
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