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Publications

2011

Highly-Birefringent Photonic Bandgap Bragg Fiber Loop Mirror for Sensing Applications

Authors
Ferreira, MS; Baptista, JM; Roy, P; Jamier, R; Fevrier, S; Frazao, O;

Publication
21ST INTERNATIONAL CONFERENCE ON OPTICAL FIBER SENSORS

Abstract
A highly-birefringent photonic bandgap Bragg fiber loop mirror sensor is proposed. Thanks to the Bragg fiber geometry, one can observe the group birefringence and the bandgap fiber in the transfer function. The sensing head presented different sensitivities for strain and temperature measurements. Using the matrix method, both the physical parameters can be discriminated. It is important to highlight that this Bragg fiber presents sensitivity to temperature of similar to 5.75 nm/degrees C, for the group birefringence measurand.

2011

UPData - A Data Curation Experiment at U.Porto using DSpace

Authors
da Silva, JR; Lopes, JC; Ribeiro, C;

Publication
Proceedings of the 8th International Conference on Digital Preservation, iPRES 2011, Singapore, November 1-4, 2011

Abstract

2011

Hybrid Wavelet-PSO-ANFIS Approach for Short-Term Electricity Prices Forecasting

Authors
Catalao, JPS; Pousinho, HMI; Mendes, VMF;

Publication
IEEE TRANSACTIONS ON POWER SYSTEMS

Abstract
A novel hybrid approach, combining wavelet transform, particle swarm optimization, and adaptive-network-based fuzzy inference system, is proposed in this paper for short-term electricity prices forecasting in a competitive market. Results from a case study based on the electricity market of mainland Spain are presented. A thorough comparison is carried out, taking into account the results of previous publications. Finally, conclusions are duly drawn.

2011

Foreword

Authors
Morgado, L;

Publication
Handbook of Research on Business Social Networking: Organizational, Managerial, and Technological Dimensions

Abstract

2011

Production of bright entangled photons from moving optical boundaries

Authors
Guerreiro, A; Ferreira, A; Mendonca, JT;

Publication
PHYSICAL REVIEW A

Abstract
We discuss a mechanism of generating two separable beams of light with a high degree of entanglement in momentum using a fast and sharp optical boundary. Three regimes of light generation are identified depending on the number of resonant interactions between the optical perturbation and the electromagnetic field. The intensity of the process is discussed in terms of the relevant physical parameters: variation of refractive index and apparent velocity of the optical boundary. Our results suggest a different class of generation entangled light that is robust against thermal degradation by exciting zero point fluctuations using parametric resonant optical modulations.

2011

Sensing characteristics of birefringent microstructured polymer optical fiber

Authors
Szczurowski, MK; Frazao, O; Baptista, JM; Nielsen, K; Bang, O; Urbanczyk, W;

Publication
21ST INTERNATIONAL CONFERENCE ON OPTICAL FIBER SENSORS

Abstract
We experimentally studied several sensing characteristics of a birefringent microstructured polymer optical fiber. The fiber exhibits a birefringence of the order 2x10(-5) at 1.3 mu m because of two small holes adjacent to the core. In this fiber, we measured spectral dependence of phase and group modal birefringence, bending losses, polarimetric sensitivity to strain and temperature. The sensitivity to strain was also examined for intermodal interference observed in the spectral range below 0.8 mu m. Finally, we showed that the material transmission windows shift as function of the applied strain. This shift has an exponential character and saturates for greater strain.

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