We report on light amplification of dye-doped hybrid channel waveguides in the near-infrared region. Films have been grown both on glass and silicon substrates by a spin-coating process that uses a hybrid organic/inorganic sol-gel route. Doped films have been obtained by incorporation of an organic dye (IR1051) emitting in the 1.1-1.3 mum spectral region. Active channel waveguides have been synthesized by photolitographic and ion-milling techniques. An optical gain of about 11 cm(-1) was estimated by amplified spontaneous emission measurements. An estimation of the optical losses of the hybrid waveguides is also reported. (C) 2003 American Institute of Physics.

1.3 mu m light amplification in dye-doped hybrid sol-gel channel waveguides

Russo R;
2003

Abstract

We report on light amplification of dye-doped hybrid channel waveguides in the near-infrared region. Films have been grown both on glass and silicon substrates by a spin-coating process that uses a hybrid organic/inorganic sol-gel route. Doped films have been obtained by incorporation of an organic dye (IR1051) emitting in the 1.1-1.3 mum spectral region. Active channel waveguides have been synthesized by photolitographic and ion-milling techniques. An optical gain of about 11 cm(-1) was estimated by amplified spontaneous emission measurements. An estimation of the optical losses of the hybrid waveguides is also reported. (C) 2003 American Institute of Physics.
2003
Inglese
83
3
416
418
AMPLIFIED SPONTANEOUS EMISSION
OPTICAL-PROPERTIES
GLASSES
MORPHOLOGY
GAIN
CAGE
7
info:eu-repo/semantics/article
262
Casalboni, M; De Matteis, F; Merlo, V; Prosposito, P; Russo, R; Schutzmann, ; S,
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/20.500.14243/194390
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