A fibre Bragg grating (FBG) sensor, fabricated using a phase mask with 536 nm uniform pitch, for simultaneous temperature and strain measurement is presented. Two peaks/dips occur, at 785 and 1552 nm, due to reflection/transmission at the Bragg wavelength and at twice the Bragg wavelength, and arising primarily from FBG periodicities associated with half the phase mask periodicity and the phase mask periodicity, respectively. This grating was simple to fabricate and by having greater reflectivity at 785 nm, compared with 1552 nm, it is better suited for long-distance operation compared with similar schemes where the greater fibre attenuation at 785 nm is a significant limitation.\u
An efficient fiber-optic sensor based on a superstructure fiber Bragg grating (SFBG) for simultaneou...
Spectral behaviour of strain and thermal sensitivities of two superimposed fibre gratings of two dif...
The strain and temperature responses of transmission dips at 2/3 of the Bragg wavelength in type I a...
A fibre Bragg grating (FBG) sensor, fabricated using a phase mask with 536 nm uniform pitch, for sim...
A fibre Bragg grating (FBG) sensor, fabricated using a phase mask with 536 nm uniform pitch, for sim...
Bragg Grating Sensors (BGS) have generated great interest in recent years because of their potential...
A new method of discriminating between temperature and strain effects in fiber sensing, using a sing...
A new approach for simultaneous strain and temperature measurement by using a single fiber Bragg gra...
International audienceWe propose a fiber Bragg grating based optical sensor to measure and localize ...
We report on recent work on sensing using in-fiber Bragg gratings carried out in our laboratory. Fir...
International audienceWe propose a fiber Bragg grating based optical sensor to measure and localize ...
A novel approach for simultaneous measurement of strain and temperature with a single tapered fiber ...
A method of discriminating between temperature and strain effects in fibre sensing using a conventio...
The effect of transverse strain on a fibre Bragg grating fabricated using a phase mask with 536 nm p...
A method of discriminating between temperature and strain effects in fibre sensing using a conventio...
An efficient fiber-optic sensor based on a superstructure fiber Bragg grating (SFBG) for simultaneou...
Spectral behaviour of strain and thermal sensitivities of two superimposed fibre gratings of two dif...
The strain and temperature responses of transmission dips at 2/3 of the Bragg wavelength in type I a...
A fibre Bragg grating (FBG) sensor, fabricated using a phase mask with 536 nm uniform pitch, for sim...
A fibre Bragg grating (FBG) sensor, fabricated using a phase mask with 536 nm uniform pitch, for sim...
Bragg Grating Sensors (BGS) have generated great interest in recent years because of their potential...
A new method of discriminating between temperature and strain effects in fiber sensing, using a sing...
A new approach for simultaneous strain and temperature measurement by using a single fiber Bragg gra...
International audienceWe propose a fiber Bragg grating based optical sensor to measure and localize ...
We report on recent work on sensing using in-fiber Bragg gratings carried out in our laboratory. Fir...
International audienceWe propose a fiber Bragg grating based optical sensor to measure and localize ...
A novel approach for simultaneous measurement of strain and temperature with a single tapered fiber ...
A method of discriminating between temperature and strain effects in fibre sensing using a conventio...
The effect of transverse strain on a fibre Bragg grating fabricated using a phase mask with 536 nm p...
A method of discriminating between temperature and strain effects in fibre sensing using a conventio...
An efficient fiber-optic sensor based on a superstructure fiber Bragg grating (SFBG) for simultaneou...
Spectral behaviour of strain and thermal sensitivities of two superimposed fibre gratings of two dif...
The strain and temperature responses of transmission dips at 2/3 of the Bragg wavelength in type I a...