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Publicações

Publicações por CTM

2005

Chirped fibre Bragg grating based multiplexer and demultiplexer for DWDM applications

Autores
Romero, R; Frazao, O; Floreani, F; Zhang, L; Marques, PVS; Salgado, HM;

Publicação
OPTICS AND LASERS IN ENGINEERING

Abstract
A multiplexer/demultiplexer for 100GHz channel spacing based on chirped fibre Bragg gratings with different bandwidths and optical circulators is presented. The spectral characteristics, specifications and operation of these passive devices are described, showing its potential use in dense wavelength division multiplexing (DWDM) applications.

2005

Optical fiber communications: Recent contributions in photonic device technology

Autores
Carvalho, JP; Romero, R; Melo, M; Gomes, LA; Frazao, O; Marques, MB; Salgado, HM;

Publicação
FIBER AND INTEGRATED OPTICS

Abstract
The current status of the research and development as well as the recent contributions in optical communications at INESC Porto is reviewed. This review includes all the work carried out in the last few years in optical fiber communications, namely the development of passive and active optical devices. Some of the passive structures that have been studied and developed are: add-drop multiplexers, multiplexer/ demultiplexer based on Bragg grating technology, dispersion compensators, and optical cross-connects. Active photonic devices such as wavelength converters, fiber lasers, and fiber amplifiers have also been studied. New ideas are being continuously developed and tested.

2005

Arc-induced long-period gratings

Autores
Rego, G; Marques, PVS; Santos, JL; Salgado, HM;

Publicação
FIBER AND INTEGRATED OPTICS

Abstract
The electric arc technique allows the inscription of long-period gratings (LPGs) virtually in all types of fibers, including non-photosensitive fibers, the case of non-Ge doped photonic crystal fibers being of particular interest. LPGs written in standard fibers using this technique have shown a high thermal stability. Also, the resistance to. - radiation of LPGs arc-induced in pure-silica-core fibers is being assessed and the achieved results are very promising. We have also demonstrated that the combination of arc-induced LPGs and UV-induced fiber Bragg gratings (FBGs) leads to sampled FBGs that are able to address sensing functionalities with enhanced performance. Therefore, as a result of their properties, gratings induced by arc-discharges can find a wide range of applications in optical communications as well as in fiber sensing.

2005

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

Autores
Rego, G; Marques, PVS; Salgado, HM; Santos, JL;

Publicação
ELECTRONICS LETTERS

Abstract
A study on arc-induced long-period fibre gratings (LPFGs) revealed that their strain sensitivity depends on the electric current of the arc discharge. Based on that property, a sensor scheme comprising two concatenated LPFGs was implemented for discrimination of temperature and strain effects. This sensor presented resolutions of +/-0.1 degreesC/rootHz and +/-35 muepsilon/rootHz, respectively.

2005

Arc-induced long-period gratings in aluminosilicate glass fibers

Autores
Rego, G; Falate, R; Santos, JL; Salgado, HM; Fabris, JL; Semjonov, SL; Dianov, EM;

Publicação
OPTICS LETTERS

Abstract
Permanent long-period gratings were written using arc discharges in two aluminosilicate fibers, one of which was doped with erbium. Reversible gratings were also mechanically induced in both fibers. The thermal behavior of the arc-induced gratings was investigated at up to 1100 degrees C. It was found that the shift of the resonant wavelengths exhibited a well-defined linear dependence on temperature up to 700 degrees C. (c) 2005 Optical Society of America.

2005

Effect of ionizing radiation on the properties of arc-induced long-period fiber gratings

Autores
Rego, G; Fernandez, AF; Gusarov, A; Brichard, B; Berghmans, F; Santos, JL; Salgado, HM;

Publicação
APPLIED OPTICS

Abstract
We experimentally study the effect of ionizing radiation on the properties of long-period gratings fabricated in two pure-silica-core fibers with the arc-discharge technique. It is observed that the spectra of the gratings remain almost unchanged after being subjected to doses in excess of 0.5 MGy. The results also show that the gratings' temperature and strain sensitivities are not affected by gamma radiation. (c) 2005 Optical Society of America.

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