2019
Authors
Argentato, MC; de Araujo Silva, A; Fracarolli, JPV; Peres, R; Floridia, C; Resende, MACdM;
Publication
2019 SBMO/IEEE MTT-S International Microwave and Optoelectronics Conference (IMOC)
Abstract
2019
Authors
de Melo, AG; Benetti, D; de Lacerda, LA; Peres, R; Floridia, C; Silva, AdA; Rosolem, JB;
Publication
Sensors
Abstract
2019
Authors
Rosolem, JB; Penze, RS; Bassan, FR; Floridia, C; Peres, R; Dini, DC; Vasconcelos, D; Junior, MAR;
Publication
Journal of Lightwave Technology
Abstract
2019
Authors
Floridia, C; Rosolem, JB; Fracarolli, JPV; Bassan, FR; Penze, RS; Pereira, LM; da Motta Resende, MAC;
Publication
Remote Sensing
Abstract
2018
Authors
Ascorbe, J; Coelho, L; Santos, JL; Frazao, O; Corres, JM;
Publication
IEEE PHOTONICS TECHNOLOGY LETTERS
Abstract
In this letter, we present a new structure composed by a long-period grating (LPG) and a microsphere in series, which works as a modal interferometer besides allowing the mode coupled to the cladding to be coupled back to the core. The LPG was written by the electric arc technique and the microsphere was fabricated using a splicing machine. It is possible to use this new structure for simultaneous measurement of strain and temperature. It also allows one to obtain a temperature compensated strain sensor by using a proper data processing algorithm, which utilizes two distinct wavelengths for strain and temperature. Then, a strain sensitivity of 0.86 pm/mu epsilon and a reduced temperature sensitivity of 0.7 pm/degrees C were achieved.
2018
Authors
Monteiro Silva, F; Santos, JL; Marques Martins de Almeida, JMMM; Coelho, L;
Publication
IEEE SENSORS JOURNAL
Abstract
It is reported a new optical sensing system, based on long period fiber gratings (LPFGs) coated with cuprous oxide (Cu2O), for the quantification of ethanol concentration in ethanol-gasoline mixtures. The detection principle is based on the spectral features dependence of the Cu2O coated LPFGs on the refractive index of the surrounding medium. The chemical constitution of the ethanol-gasoline samples was obtained by gas chromatography mass spectrometry (GC) and GC thermal conductivity detection. Two different modes of operation are presented, wavelength shift and optical power shift mode of operation, with good linear relations between ethanol concentration and the corresponding spectral features of the LPFGs, R-2 = 0.999 and 0.996, respectively. In the range of ethanol concentration up to 30% v/v, the sensitivities were 0.76 +/- 0.01 nm/% v/v and 0.125 +/- 0.003 dB/% v/v with resolutions of 0.21% v/v and 0.73% v/v and limits of detection of 1.63% v/v and 2.10% v/v, for the for the same operation modes, respectively.
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