We present the fabrication and characterization of fiber Bragg gratings (FBGs) in an endlessly single-mode microstructured polymer optical fiber (mPOF) made of humidity-insensitive high-Tg TOPAS cyclic olefin copolymer. The mPOF is the first made from grade 5013 TOPAS with a glass transition temperature of Tg = 135 degrees C and we experimentally demonstrate high strain operation (2.5%) of the FBG at 98 degrees C and stable operation up to a record high temperature of 110 degrees C. The Bragg wavelengths of the FBGs are around 860 nm, where the propagation loss is 5.1dB/m, close to the fiber loss minimum of 3.67dB/m at 787nm. (C) 2013 Optical Society of Americ
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
We present a strain and temperature polymer fiber sensor with exceptional optical properties based o...
Fibre Bragg gratings have been inscribed in multimode microstructured polymer optical fibre (POF), w...
We present the fabrication and characterization of fiber Bragg gratings (FBGs) in an endlessly singl...
We report the first experimental demonstration of a humidity insensitive polymer optical fiber Bragg...
We report on the temperature response of FBGs recorded in pure PMMA and TOPAS holey fibers. The grat...
We report the fabrication and characterization of a fiber Bragg grating (FBG) with 870 nm resonance ...
A report is presented on the inscription of a fibre Bragg grating into a microstructured polymer opt...
Here we present the fabrication of a solid-core microstructured polymer optical fiber (mPOF) made of...
We describe the fabrication of a polycarbonate (PC) micro-structured polymer optical fiber (mPOF) an...
[EN] We demonstrate a chirped microstructured polymer fiber Bragg grating based on taper technology ...
This research demonstrates how low loss commercially available multi-mode (MM), perfluorinated polym...
M.Ing.Bragg gratings written in polymer optical fibres are much more sensitive to temperature and st...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
We present the fabrication and characterization of a polycarbonate (PC) microstructured polymer opti...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
We present a strain and temperature polymer fiber sensor with exceptional optical properties based o...
Fibre Bragg gratings have been inscribed in multimode microstructured polymer optical fibre (POF), w...
We present the fabrication and characterization of fiber Bragg gratings (FBGs) in an endlessly singl...
We report the first experimental demonstration of a humidity insensitive polymer optical fiber Bragg...
We report on the temperature response of FBGs recorded in pure PMMA and TOPAS holey fibers. The grat...
We report the fabrication and characterization of a fiber Bragg grating (FBG) with 870 nm resonance ...
A report is presented on the inscription of a fibre Bragg grating into a microstructured polymer opt...
Here we present the fabrication of a solid-core microstructured polymer optical fiber (mPOF) made of...
We describe the fabrication of a polycarbonate (PC) micro-structured polymer optical fiber (mPOF) an...
[EN] We demonstrate a chirped microstructured polymer fiber Bragg grating based on taper technology ...
This research demonstrates how low loss commercially available multi-mode (MM), perfluorinated polym...
M.Ing.Bragg gratings written in polymer optical fibres are much more sensitive to temperature and st...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
We present the fabrication and characterization of a polycarbonate (PC) microstructured polymer opti...
In this work we investigate the strain, temperature and humidity sensitivity of a Fiber Bragg Gratin...
We present a strain and temperature polymer fiber sensor with exceptional optical properties based o...
Fibre Bragg gratings have been inscribed in multimode microstructured polymer optical fibre (POF), w...