GeO2-SiO2 sol-gel planar waveguides doped with Er were deposited by spinning on silica substrates. P2O5 or Al2O3 were used as co-dopants to improve erbium dissolution in the GeO2-SiO2 matrix. Multilayer amorphous films were obtained at 600 or 700°C. Er ions in the planar waveguide pumped at 980 nm showed fluorescence features around 1530 nm. Narrow fluorescence spectra (~20 nm) and long lifetimes (~6 ms) were found in P2O5 co-doped samples, whereas Al2O3 co-doping gave wider spectra (~50 nm) with slightly lower lifetimes (~5 ms). The quenching concentration in the Al2O3 co-doped samples was 0.9 mol% Er. Heat treatments in CCl4 improve the active properties and the addition of Yb enhances the pump absorption efficiency.

Fabrication and Characterization of Sol-Gel GeO2-SiO2 Erbium-Doped Planar Waveguides

S Pelli;
1999

Abstract

GeO2-SiO2 sol-gel planar waveguides doped with Er were deposited by spinning on silica substrates. P2O5 or Al2O3 were used as co-dopants to improve erbium dissolution in the GeO2-SiO2 matrix. Multilayer amorphous films were obtained at 600 or 700°C. Er ions in the planar waveguide pumped at 980 nm showed fluorescence features around 1530 nm. Narrow fluorescence spectra (~20 nm) and long lifetimes (~6 ms) were found in P2O5 co-doped samples, whereas Al2O3 co-doping gave wider spectra (~50 nm) with slightly lower lifetimes (~5 ms). The quenching concentration in the Al2O3 co-doped samples was 0.9 mol% Er. Heat treatments in CCl4 improve the active properties and the addition of Yb enhances the pump absorption efficiency.
1999
Istituto di Fisica Applicata - IFAC
Inglese
13
1-3
535
539
5
http://link.springer.com/article/10.1023%2FA%3A1008618621828
Sì, ma tipo non specificato
Doping
Deposition
Germanium compounds
Sol-gels
2
2
info:eu-repo/semantics/article
262
A. Martucci; G. Brusatin; M. Guglielmi; C. Strohhöfer; J. Fick; S. Pelli; G.C. Righini
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/7747
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