This work demonstrated for the first time, the thermal regeneration of two and four modes graded index fiber Bragg gratings using high temperature tube furnace. During the regeneration process, the seed grating is erased and a new grating with lower index contrast is formed. The thermal calibration shows that the temperature sensitivity of regenerated grating is slightly higher for fiber with larger core. On the other hand, the regeneration temperature is lower for fiber with smaller core. The temperature sustainability up to 900 °C is observed for the produced regenerated gratings in few mode fibers
International audienceA high-temperature gradient of a conventional tubular furnace is characterized...
In this work, the regeneration process of FBGs written into both standard and bend-insensitive fiber...
International audienceA high-temperature gradient of a conventional tubular furnace is characterized...
In this work, thermal regeneration of fiber Bragg gratings inscribed in single-mode fibers, two-mode...
In this work, thermal regeneration of fiber Bragg gratings inscribed in single-mode fibers, two-mode...
Thermally regenerated fiber Bragg gratings written in photosensitive fibers with nanosecond laser pu...
In this work, we demonstrate the thermal regeneration of fiber Bragg gratings written in the hydroge...
A Type-IIa Regenerated Fibre Bragg Grating (RFBG) was fabricated via a thermal activation process at...
Thermal regeneration is observed in etched-core fiber Bragg gratings (FBGs) with a fiber diameter of...
Abstract The pre-treatment of few-mode fibers (FMFs) has been successfully done with CO2 laser. The ...
The pre-treatment of few-mode fibers (FMFs) has been successfully done with CO2 laser. The wavelengt...
The thermal regeneration of fiber Bragg gratings inscribed on hydrogenated gallosilicate optical fib...
The thermal regeneration of fiber Bragg gratings inscribed on hydrogenated gallosilicate optical fib...
In this paper, we have experimentally demonstrated thermal regeneration of gratings at 1310 and 1560...
We report about the possibility of using regenerated fiber Bragg gratings generated in photosensitiv...
International audienceA high-temperature gradient of a conventional tubular furnace is characterized...
In this work, the regeneration process of FBGs written into both standard and bend-insensitive fiber...
International audienceA high-temperature gradient of a conventional tubular furnace is characterized...
In this work, thermal regeneration of fiber Bragg gratings inscribed in single-mode fibers, two-mode...
In this work, thermal regeneration of fiber Bragg gratings inscribed in single-mode fibers, two-mode...
Thermally regenerated fiber Bragg gratings written in photosensitive fibers with nanosecond laser pu...
In this work, we demonstrate the thermal regeneration of fiber Bragg gratings written in the hydroge...
A Type-IIa Regenerated Fibre Bragg Grating (RFBG) was fabricated via a thermal activation process at...
Thermal regeneration is observed in etched-core fiber Bragg gratings (FBGs) with a fiber diameter of...
Abstract The pre-treatment of few-mode fibers (FMFs) has been successfully done with CO2 laser. The ...
The pre-treatment of few-mode fibers (FMFs) has been successfully done with CO2 laser. The wavelengt...
The thermal regeneration of fiber Bragg gratings inscribed on hydrogenated gallosilicate optical fib...
The thermal regeneration of fiber Bragg gratings inscribed on hydrogenated gallosilicate optical fib...
In this paper, we have experimentally demonstrated thermal regeneration of gratings at 1310 and 1560...
We report about the possibility of using regenerated fiber Bragg gratings generated in photosensitiv...
International audienceA high-temperature gradient of a conventional tubular furnace is characterized...
In this work, the regeneration process of FBGs written into both standard and bend-insensitive fiber...
International audienceA high-temperature gradient of a conventional tubular furnace is characterized...