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Publications

Publications by José Luís Santos

2009

Radio-Frequency Self-Referencing Technique With Enhanced Sensitivity for Coarse WDM Fiber Optic Intensity Sensors

Authors
Montalvo, J; Frazao, O; Santos, JL; Vazquez, C; Baptista, JM;

Publication
JOURNAL OF LIGHTWAVE TECHNOLOGY

Abstract
A self-referenced passive optical network (PON) with coarse wavelength division multiplexing (CWDM) is reported for remotely addressing optical intensity sensors with enhanced sensitivity. The self-referencing remote configuration is described as a finite-impulse-response (FIR) filter in reflective operation using two fiber Bragg gratings (FBG) and a fiber delay line. The antisymmetrical phase response of the configuration permits to achieve a self-referencing measurement parameter two times more sensitive than reported previously. To enhance the power budget of the network, CWDM devices with low insertion losses are used for spectral splitting of a radio-frequency (RF) modulated broadband light source (BLS). The network topology and the sensor's interrogation technique are theoretically analyzed and experimental results validating the models are reported.

2009

Raman fibre Bragg-grating laser sensor with cooperative Rayleigh scattering for strain-temperature measurement

Authors
Frazao, O; Correia, C; Santos, JL; Baptista, JM;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
In this work, a Raman fibre Bragg-grating laser sensor for strain-temperature measurement is presented. The laser resonator is a linear cavity formed by the reflectivity of the Bragg gratings and the virtual distributed mirror formed from the cooperative Rayleigh scattering in a dispersion-compensating fibre created by the Raman effect. Using one pump laser it is possible to obtain a Raman fibre Bragg-grating laser sensor with a range of similar to 35 nm. The sensing system is demonstrated when the fibre Bragg gratings are remotely located at a 10 km distance.

2009

Fiber-Optic Interferometric Torsion Sensor Based on a Two-LP-Mode Operation in Birefringent Fiber

Authors
Frazao, O; Jesus, C; Baptista, JM; Santos, JL; Roy, P;

Publication
IEEE PHOTONICS TECHNOLOGY LETTERS

Abstract
A fiber-optic sensor for torsion measurement, based on a two-linearly polarized (LP)-mode operation in ultrahigh birefringent photonic crystal fiber is described. The structure of the photonic crystal fiber presents two large asymmetric holes adjacent to the core fiber. When linearly polarized light is injected in x- and y-directions, respectively, two separate interferometers can be obtained. In one of these cases, as torsion is applied to the sensing head a beat between the two interferometers is formed due to the simultaneous excitation of the two polarization states. The detection technique to read the torsion sensor is based on the analysis of the fast Fourier transform, which proved to be an effective and simple solution. The sensor exhibited reduced sensitivity to temperature.

2009

Fabry-Perot Cavity Based on a Suspended-Core Fiber for Strain and Temperature Measurement

Authors
Frazao, O; Aref, SH; Baptista, JM; Santos, JL; Latifi, H; Farahi, F; Kobelke, J; Schuster, K;

Publication
IEEE PHOTONICS TECHNOLOGY LETTERS

Abstract
A fiber-optic Fabry-Perot sensing structure based on the utilization of a suspended-core fiber is presented. The interferometric structure is formed when a small length of the suspended-core fiber is spliced to the end of a standard single-mode fiber. The interfering waves are generated by the refractive-index mismatches between the two fibers in the splice region and at the end of the suspended-core fiber. Thermal and strain responses of two different sensing heads associated with suspended-core fibers with three and four holes are characterized.

2009

Frequency Modulated Continuous Wave System for Optical Fiber Intensity Sensors With Optical Amplification

Authors
Ana Perez Herrera, RA; Frazao, O; Santos, JL; Araujo, FM; Ferreira, LA; Baptista, JM; Lopez Amo, M;

Publication
IEEE SENSORS JOURNAL

Abstract
We report on the use of erbium doped fiber ( EDF) amplification to enhance a frequency modulated continuous wave (FMCW) technique for referencing optical intensity sensors located between two Bragg grating structures. The experiment combines the concept of FMCW with the spectrally selective mirror properties of Bragg gratings to interrogate with referencing properties intensity based sensors. The interrogation system without amplification yields a sensor resolution of around 0.078 dB. When the EDF amplifier is introduced into the experimental set up, the sensor sensitivity does not change, but the signal-to-noise ratio is improved, resulting into an enhanced resolution of 0.025 dB. We also obtain a remote sensing operation at a location of 50 km, showing the feasibility of this configuration to be used as a remote sensing application.

2010

A hybrid Fabry-Perot/Michelson interferometer sensor using a dual asymmetric core microstructured fiber

Authors
Frazao, O; Silva, SF; Viegas, J; Baptista, JM; Santos, JL; Roy, P;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
A hybrid Fabry-Perot/Michelson interferometer sensor using a dual asymmetric core microstructured fiber is demonstrated. The hybrid interferometer presents three waves. Two parallel Fabry-Perot cavities with low finesse are formed between the splice region and the end of a dual-core microstructured fiber. A Michelson configuration is obtained by the two small cores of the microstructured fiber. The spectral response of the hybrid interferometer presents two pattern fringes with different frequencies due to the respective optical path interferometers. The hybrid interferometer was characterized in strain and temperature presenting different sensitivity coefficients for each topology. Due to these characteristics, this novel sensing head is able to measure strain and temperature, simultaneously.

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