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Publicações

Publicações por José Luís Santos

2009

Self-referencing model for electro-optical WDM fiber-optic intensity-based sensor network

Autores
Montero, DS; Vazquez, C; Baptista, JM; Santos, JL;

Publicação
Proceedings of SPIE - The International Society for Optical Engineering

Abstract
A novel self-referencing parameter for electro-optical WDM networks in reflective configuration for remote fiber-optic intensity sensors is reported and experimentally tested. In this configuration electrical delay lines are deployed at the processing unit, instead of long delay fiber coils in each measuring point; providing a more compact sensor-head and an easy-reconfigurable operation point. The measurement parameter is defined as the ratio between voltage values at the reception stage for different electrical phase-shifts and it is analyzed following the Z-transform formalism. Measurements validating the theoretical model are reported and self-referencing and crosstalk properties of the network are analyzed. © 2009 SPIE.

2011

Fabry-Perot cavity based on a diaphragm-free hollow-core silica tube

Autores
Ferreira, MS; Coelho, L; Schuster, K; Kobelke, J; Santos, JL; Frazao, O;

Publicação
OPTICS LETTERS

Abstract
A Fabry-Perot (FP) cavity of simple design and based on a pure silica diaphragm-free hollow tube is proposed. Its operation is based on a first reflection of light at the end of the single-mode fiber that illuminates the silica rod and in a second reflection that takes place at the end of the rod. The FP cavity is characterized for high temperature, pressure and refractive index sensing, showing useful characteristics for the measurement of these three parameters. The diaphragm-free configuration simplifies the measurement of the refractive index of fluids. (C) 2011 Optical Society of America

2012

A Review of Palladium-Based Fiber-Optic Sensors for Molecular Hydrogen Detection

Autores
Silva, SF; Coelho, L; Frazao, O; Santos, JL; Xavier Malcata, FX;

Publicação
IEEE SENSORS JOURNAL

Abstract
Palladium-based fiber-optic sensors have been one of the most promising configurations for hydrogen sensing. In the latest decade, fiber-optic sensors have indeed earned a strong interest owing to their ability to monitor molecular hydrogen at specific spatial points-either as a sensing tip device or in large areas via multiple sensing regions distributed along the optical fiber. This review focuses on the various types of optical fiber hydrogen sensors, containing specifically palladium as active element. Three distinct working principles are described, viz. interferometric-, intensity-, and fiber grating-based sensors; their characteristics and sensing performances are critically overviewed.

2012

Simultaneous measurement of partial pressure of O-2 and CO2 with a hybrid interferometer

Autores
Coelho, L; Tafulo, PAR; Jorge, PAS; Santos, JL; Viegas, D; Schuster, K; Kobelke, J; Frazao, O;

Publicação
OPTICS LETTERS

Abstract
In this Letter, a hybrid interferometer for simultaneous measurement of the partial pressures of O-2 and CO2 mixtures is reported. The sensing head consists in the combination of two interferometric structures, one a Fabry-Perrot cavity and the other a modal interferometer. The intrinsic Fabry-Perot was formed by splicing a single mode fiber with a graded index fiber length that was then subjected to chemical etching creating an air cavity. The second interferometer is based on a splice of a pure silica tube in series with the Fabry-Perot. It was observed for a particular gas that its refractive index changes with pressure variation in a specific way, a characteristic that permitted the simultaneous measurement of partial pressures of CO2 and O-2 with rms deviations of similar to +/- 48.7 kPa and similar to +/- 20.1 kPa, respectively. (C) 2012 Optical Society of America

2010

Surface-Plasmon-Resonance Sensor Based on H-shaped Optical Fibre

Autores
Viegas, D; Hautakorpi, M; Guerreiro, A; Santos, JL; Ludvigsen, H;

Publicação
FOURTH EUROPEAN WORKSHOP ON OPTICAL FIBRE SENSORS

Abstract
We propose and theoretically study a novel surface-plasmon-resonance sensor based on an H-shaped, elliptical-core optical fibre. The two grooves of the H-fibre are coated with a thin, uniform metal layer that in turn is covered with a high-index dielectric layer to allow broad spectral tunability. The sensor maintains linear polarization and facilitates effortless splicing. Electromagnetic mode analysis indicates a sensitivity of 1800 nm/RIU (refractive-index unit) for aqueous analytes.

2008

Strain and temperature characterisation of sensing head based on suspended-core fibre in Sagnac interferometer

Autores
Frazao, O; Baptista, JM; Santos, JL; Kobelke, J; Schuster, K;

Publicação
ELECTRONICS LETTERS

Abstract
The study of the strain and temperature characteristics of a sensing head based on a four-hole suspended-core fibre in a Sagnac interferometric configuration is reported. It is shown that, for the case of using an uncoated suspended-core fibre, a relatively large strain sensitivity is obtained (similar or equal to 1.94 pm/mu epsilon), while the temperature sensitivity is small (similar or equal to 0.29 pm/degrees C), pointing to a temperature-independent strain sensor. When the fibre is coated, the strain sensitivity remains essentially the same, while the temperature sensitivity becomes much larger and with a value that changes with the localisation of the temperature variation range.

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