The present work describes photodarkening from the viewpoint of cooperative luminescence. The temporal evolution of both effects was measured simultaneously by means of ytterbium doped aluminosilicate fibers for concentrations up to 1.8 wt% Yb3+. The quadratic dependence of photodarkening and cooperative luminescence versus dopant concentration was observed. The change in the photodarkening and cooperative luminescence mutual dynamics for highly and low doped fibers is ascribed to a different ion number which forms the cluster. Cooperative luminescence is proved to be a natural probe for photodarkening since it provides new pieces of information and contributes to the photodarkening mechanism description.
Temporal evolution and correlation between cooperative luminescence and photodarkening in ytterbium doped silica fibers / Gebavi, H.; Taccheo, S.; Milanese, Daniel; Monteville, A.; Le Goffic, O.; Landais, D.; Mechin, D.; Tregoat, D.; Cadier, B.; Robin, T.. - In: OPTICS EXPRESS. - ISSN 1094-4087. - ELETTRONICO. - 19:25(2011), pp. 25077-25083. [10.1364/OE.19.025077]
Temporal evolution and correlation between cooperative luminescence and photodarkening in ytterbium doped silica fibers
Taccheo S.;MILANESE, DANIEL;
2011
Abstract
The present work describes photodarkening from the viewpoint of cooperative luminescence. The temporal evolution of both effects was measured simultaneously by means of ytterbium doped aluminosilicate fibers for concentrations up to 1.8 wt% Yb3+. The quadratic dependence of photodarkening and cooperative luminescence versus dopant concentration was observed. The change in the photodarkening and cooperative luminescence mutual dynamics for highly and low doped fibers is ascribed to a different ion number which forms the cluster. Cooperative luminescence is proved to be a natural probe for photodarkening since it provides new pieces of information and contributes to the photodarkening mechanism description.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2466784
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