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Thulium environment in a silica doped optical fibre
Authors:W Blanc  TL Sebastian  B Dussardier  C Michel  B Faure  M Ude  G Monnom
Institution:1. Laboratoire de Physique de la Matière Condensée, CNRS UMR6622, Université de Nice, Sophia Antipolis, Parc Valrose, 06108 Nice Cedex 2, France;2. Departamento de Fisica, Universidad de Concepcion, Casilla, 160 C, Concepcion, Octava Region, Chile
Abstract:Thulium-doped optical fibre amplifiers (TDFA) are developed to extend the optical telecommunication wavelength division multiplexing (WDM) bandwidth in the so-called S-band (1460–1530 nm). The radiative transition at 1.47 μm (3H4  3F4) competes with a non-radiative multi-phonon de-excitation (3H4  3H5). The quantum efficiency of the transition of interest is then highly affected by the phonon energy (Ep) of the material. For reliability reasons, oxide glasses are preferred but suffer from high phonon energy. In the case of silica glass, Ep is around 1100 cm?1 and quantum efficiency is as low as 2%. To improve it, phonon energy in the thulium environment must be lowered. For that reason, aluminium is added and we explore three different core compositions: pure silica, and silica slightly modified with germanium or phosphorus. The role of aluminium is studied through fluorescence decay curves, fitted according to the continuous function decay analysis. From this analysis, modification of the thulium local environment due to aluminium is evidenced.
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