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Publications

Publications by José Luís Santos

2003

Fibre Bragg grating interrogation technique based on a chirped grating written in an erbium-doped fibre

Authors
Romero, R; Frazao, O; Marques, PVS; Salgado, HM; Santos, JL;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
A fibre Bragg grating interrogation technique with tunable sensitivity is reported. It relies on the utilization of the edge filtering concept applied to a chirped fibre Bragg grating (CFBG) written in an erbium-doped fibre as the processing element. Through the combination of the optical gain properties of the erbium-doped fibre and of the distributed wavelength reflection characteristics of the CFBG, it is possible to achieve different reading sensitivities and amplification of the remote sensing signal.

2003

New technique to mechanically induce long-period fibre gratings

Authors
Rego, G; Fernandes, JRA; Santos, JL; Salgado, HM; Marques, PVS;

Publication
OPTICS COMMUNICATIONS

Abstract
A full characterization of reversible long-period fibre gratings produced through the wind of a string around a fibre/grooved tube set is presented. This technique enables a good control over the gratings isolation loss-peaks and has high repeatability. The tunability of the resonant wavelengths through the etching of the fibres cladding, prior to perform the gratings, have been investigated. These mechanically induced long-period fibre gratings have shown high sensitivity to loads.

2006

Polarization dependent loss of arc-induced long-period fibre gratings

Authors
Rego, GM; Santos, JL; Salgado, HM;

Publication
OPTICS COMMUNICATIONS

Abstract
We have investigated the polarization properties of long-period fibre gratings fabricated using the electric arc technique. It was found that the choice of the fabrication parameters (electric current, arc duration and pulling tension) affects the polarization dependent loss of the produced gratings. In particular, a non-monotonic dependence on the external pulling tension was obtained.

2006

Estimation of the fibre temperature during the inscription of arc-induced long-period gratings

Authors
Rego, GM; Marques, PVS; Santos, JL; Salgado, HM;

Publication
OPTICS COMMUNICATIONS

Abstract
The underlying formation mechanisms and the properties of long-period gratings produced through arc discharges are intrinsically related to the temperature reached by the fibre during arc exposure. In this work, the determination of the fibre temperature was based on Plank's blackbody radiation law. The radiation emitted by the optical fibre during heating due to an electric arc discharge, detected using a Cronin spectrometer, was fitted to the emission spectrum of the blackbody radiation, allowing the estimation of the temperature range attained by the fibre. A peak temperature of 1400 +/- 50 degrees C was obtained.

2006

Refractive index measurement with long-period gratings arc-induced in pure-silica-core fibres

Authors
Rego, GM; Santos, JL; Salgado, HM;

Publication
OPTICS COMMUNICATIONS

Abstract
We have investigated the sensitivity of arc-induced long-period gratings to changes of ambient refractive index. Two pure-silica-core fibres with different cladding diameters and a standard fibre were used in this study. For a 6 x 10(-3) change of the refractive index, a 240 pm shift of the resonant wavelength was achieved with long-period gratings written in the 125 mu m cladding diameter pure-silica-core fibre.

2005

Simultaneous temperature and strain measurement based on arc-induced long-period fiber gratings

Authors
Rego, G; Falate, R; Kalinowski, HJ; Fabris, JL; Marques, PVS; Salgado, HM; Santos, JL;

Publication
17th International Conference on Optical Fibre Sensors, Pts 1 and 2

Abstract
A compact sensor able to discriminate between temperature and strain related effects was implemented. The proposed sensing head comprises a single long-period grating with two sections written consecutively in the SMF-28 fiber, by the electric arc discharge technique, using different fabrication parameters. The sensor performance is based on the distinct temperature and strain sensitivity values presented by two neighbor resonances belonging to each grating section. The temperature and strain resolutions are +/- 0.1 degrees C and +/- 40 mu epsilon, respectively.

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