Correlation between photodarkening and index change during 193 nm irradiation of germanosilicate and phosphosilicate fibers
Photodarkening at visible wavelengths and index changes are simultaneously studied as germanosilicate or phosphosilicate fiber is irradiated with 193 nm light. Using a modal interferometer, the relaxation of the photodarkening is shown to occur on a different timescale to relaxation of the index cha...
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Published in | Journal of lightwave technology Vol. 15; no. 8; pp. 1348 - 1356 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
IEEE
01.08.1997
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Abstract | Photodarkening at visible wavelengths and index changes are simultaneously studied as germanosilicate or phosphosilicate fiber is irradiated with 193 nm light. Using a modal interferometer, the relaxation of the photodarkening is shown to occur on a different timescale to relaxation of the index change. Spectral attenuation profiles are used to distinguish the relationship between index change and photodarkening due to both electronic absorption and Rayleigh scattering. The role of hydrogen on both processes is also studied. |
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AbstractList | Photodarkening at visible wavelengths and index changes are simultaneously studied as germanosilicate or phosphosilicate fiber is irradiated with 193 nm light. Using a modal interferometer, the relaxation of the photodarkening is shown to occur on a different timescale to relaxation of the index change. Spectral attenuation profiles are used to distinguish the relationship between index change and photodarkening due to both electronic absorption and Rayleigh scattering. The role of hydrogen on both processes is also studied. Photodarkening at visible wavelengths and index changes are simultaneously studied as germanosilicate or phosphosilicate fiber is irradiated with 193 nm light. Using a modal interferometer, the relaxation of the photodarkening is shown to occur on a different timescale to relaxation of the index change. Spectral attenuation profiles are used to distinguish the relationship between index change and photodarkening due to both electronic absorption and Rayleigh scattering. The role of hydrogen on both processes is also studied |
Author | Carter, A.L.G. Sceats, M.G. Canning, J. |
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Cites_doi | 10.1364/OFC.1994.TuB3 10.1049/el:19940920 10.1364/OL.20.001346 10.1049/el:19950373 10.1109/50.134190 10.1088/0953-8984/7/31/008 10.1364/OL.20.000719 10.1146/annurev.ms.23.080193.002121 10.1364/OL.19.000951 10.1364/OL.19.000874 10.1016/0030-4018(94)90464-2 10.1063/1.112033 10.1364/OFC.1995.WN2 10.1364/OL.14.000823 10.1364/AO.34.003436 10.1364/OL.21.001827 10.1049/el:19950672 10.1049/el:19921288 10.1364/OL.20.002189 |
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References | ref12 ref15 douay (ref13) 1995 canning (ref5) 1996 ref2 ref1 ref17 ref16 ref19 (ref21) 1983 snyder (ref20) 1983 archambault (ref6) 1994; 8 (ref18) 1988; iii ref24 ref23 ref26 ref25 ref22 inglis (ref11) 0 loh (ref3) 1996 riant (ref14) 1995 ref28 ref27 ref29 ref8 ref7 ref9 ref4 canning (ref10) 1995 |
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Snippet | Photodarkening at visible wavelengths and index changes are simultaneously studied as germanosilicate or phosphosilicate fiber is irradiated with 193 nm light.... |
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SubjectTerms | Absorption Australia Canning Glass Hydrogen Optical attenuators Optical fibers Optical interferometry Photochromism Rayleigh scattering |
Title | Correlation between photodarkening and index change during 193 nm irradiation of germanosilicate and phosphosilicate fibers |
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