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Publicações

Publicações por Orlando Frazão

2007

Evaluation of coupling losses in hollow-core photonic crystal fibres - art. no. 66191V

Autores
Carvalho, JP; Magalhaes, F; Ivanov, OV; Frazao, O; Araujo, FM; Ferreira, LA; Santos, JL;

Publicação
Third European Workshop on Optical Fibre Sensors

Abstract
Hollow-core photonic crystal fibres have a high potential for gas sensing applications, since large light-gas interaction lengths can be effectively attained. Nevertheless, in order to enhance effective diffusion of gas into the fibre hollow-core multi-coupling gaps are needed, which raise coupling loss issues that must be evaluated prior to the development of practical systems. In this communication we present a study on the coupling losses dependence on lateral and axial gap misalignment for single-mode fibre and two different types of hollow-core photonic crystal fibres. In addition, experimental results on the splicing of these fibres are also presented.

2007

In-fibre Mach-Zehnder configuration based on fibre multimode interference structure combined with a long period grating - art. no. 66192H

Autores
Frazao, O; Viegas, J; Caldas, P; Araujo, FM; Ferreira, LA; Santos, JL; Farahi, F;

Publicação
Third European Workshop on Optical Fibre Sensors

Abstract
A novel Mach-Zehnder interferometer based on a fibre multimode interference structure combined with a long period fibre grating is proposed. The multimode interference is achieved through the use of a multimode fibre section splices between two sin-le-mode fibres, with a length adjusted to couple a fraction of light into the cladding modes. A LP placed after the multimode fibre couples light back into the fibre core completing the Mach-Zehnder interferometer. The novel configuration was demonstrated as a bending sensor.

2010

Simultaneous Measurement of Strain and Temperature using Modal Interferometry in Bragg Fibers

Autores
Frazao, O; Amaral, LMN; Santos, JL; Roy, P; Jamier, R; Fevrier, S;

Publicação
2ND WORKSHOP ON SPECIALTY OPTICAL FIBERS AND THEIR APPLICATIONS WSOF-2

Abstract
In this work it is investigated the strain and temperature sensing characteristics of modal interferometers supported by two Bragg fibers with different cross-section cladding geometries. It is shown that the sensitivity to these measurands is different for the two fibers, which turns feasible the conception of several sensing configurations based on the combination of these two fiber types for simultaneous measurement of strain and temperature.

2010

Temperature- and Strain-Independent Curvature Sensor Based on Multimode Interference

Autores
Silva, S; Frazao, O; Ferreira, LA; Araujo, FM; Malcata, FX; Santos, JL;

Publicação
FOURTH EUROPEAN WORKSHOP ON OPTICAL FIBRE SENSORS

Abstract
This work describes a fibre optic sensing structure that is sensitive to curvature, and features a low temperature- and strain cross-sensitivity. It is based on multimode interference, and relies on a single mode - step index multimode - single mode fibre configuration. It was observed that the transmitted optical power in such layout becomes highly sensitive to the wavelength of operation and to the length of the multimode fibre. The optical spectrum entertains two dominant loss bands, at wavelengths that have similar responses both to temperature and strain, and different responses to curvature. Based on this result, an interrogation approach is proposed that permits substantial sensitivity to curvature (8.7 +/- 0.1 nm.m) and residual sensitivities to temperature and strain (0.3 +/- 0.1 pm/degrees C and -0.06 +/- 0.01 pm/mu epsilon, respectively).

2005

Short in-fibre Bragg grating structure for simultaneous measurement of strain and temperature

Autores
Frazao, O; Melo, M; Romero, R; Marques, PVS; Araujo, FM; Ferreira, LA; Santos, JL;

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

Abstract
The study of a single short length Bragg grating for sensing applications is presented. The dependences of the central wavelength, reflected optical power and spectral width of a 250 mu m length grating on strain and temperature are analyzed. The obtained results indicate the feasibility of this novel sensing head for simultaneous measurement of strain and temperature.

2011

Modal Interferometric Sensor Based in a Birefringent Boron-doped Microstructured Fiber

Autores
Statkiewicz Barabach, G; Carvalho, JP; Frazao, O; Olszewski, J; Mergo, P; Santos, JL; Urbanczyk, W;

Publicação
INTERNATIONAL CONFERENCE ON APPLICATIONS OF OPTICS AND PHOTONICS

Abstract
Microstructured optical fibers (MOFs) have been widely studied owing to their potential for obtaining novel transmission, nonlinear and sensing characteristics. Sensing applications of MOFs cover various types of devices for measurements of different physical and specific chemical compounds in gases and liquids employing evanescent field techniques. Such fibers can also be used as active and passive elements in fiber-optic polarimetric and interferometric sensors. We present an in-line fiber modal interferometer fabricated in boron-doped highly birefringent microstructured fiber. The boron-doped region located in the middle of the core decreases the effective index of the fundamental mode and facilitates coupling between the fundamental and the first order mode. The coupling regions have the form of fiber narrowings fabricated using CO2 laser and are distant by a few millimeters. The spectral intensity at the sensor output is modulated only by intermodal interference produced by a short piece of fiber between the two coupling points. Moreover, as the fiber is highly birefringence, each pair of polarization modes produces its own intermodal fringes, which results in the contrast modulation of the overall interference signal observed at the fiber output, and provides an additional degree of freedom to measure simultaneously a pair of measurands.

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