Optical sensors, such as fiber Bragg gratings, offer advantages compared to other sensors in many technological fields due to their outstanding characteristics. This sensor technology is currently transferred to polymer waveguides that provide the potential for cost-effective, easy, and flexible manufacturing of planar structures. While sensor production itself, in the majority of cases, is performed by means of phase mask technique, which is limited in terms of its degrees of freedom, other inscription techniques enable the manufacture of more adaptable sensor elements for a wider range of applications. In this article, we demonstrate the point-by-point femtosecond laser direct inscription method for the processing of polymer Bragg gratin...
We experimentally demonstrate the first polymer optical fiber Bragg grating inscribed with only one ...
In this paper, we present two different ways to embed polymer fibre Bragg gratings (FBGs) into polym...
Author name used in this publication: Zhi Feng ZhangAuthor name used in this publication: Xiao Ming ...
AbstractWe present a technology for integrating Bragg gratings with single mode polymer waveguides f...
AbstractOptical sensors offer important advantages for sensing applications, compared to their elect...
Waveguides with Bragg gratings realized on a flat polymer foil are promising candidates for advanced...
We present the first phase-shifted polymer optical fiber Bragg grating sensor inscribed with only on...
This thesis presents the potential sensing applications of fibre Bragg gratings in polymer optical f...
We report chirped fiber Bragg gratings (CFBGs) photo-inscribed in undoped PMMA polymer optical fibre...
The humidity sensor made of polymer optical fiber Bragg grating (POFBG) responds to the water conten...
We report on the temperature response of FBGs recorded in pure PMMA and TOPAS holey fibers. The grat...
Polymer micro-fibers with inscribed Bragg gratings are reported in this paper. By implementing a two...
We investigate the use of an arrayed waveguide grating (AWG) to interrogate both fibre Bragg grating...
Composite materials are extensively used in a wide array of application markets by virtue of their s...
We report the fabrication and characterization of a fiber Bragg grating (FBG) with 870 nm resonance ...
We experimentally demonstrate the first polymer optical fiber Bragg grating inscribed with only one ...
In this paper, we present two different ways to embed polymer fibre Bragg gratings (FBGs) into polym...
Author name used in this publication: Zhi Feng ZhangAuthor name used in this publication: Xiao Ming ...
AbstractWe present a technology for integrating Bragg gratings with single mode polymer waveguides f...
AbstractOptical sensors offer important advantages for sensing applications, compared to their elect...
Waveguides with Bragg gratings realized on a flat polymer foil are promising candidates for advanced...
We present the first phase-shifted polymer optical fiber Bragg grating sensor inscribed with only on...
This thesis presents the potential sensing applications of fibre Bragg gratings in polymer optical f...
We report chirped fiber Bragg gratings (CFBGs) photo-inscribed in undoped PMMA polymer optical fibre...
The humidity sensor made of polymer optical fiber Bragg grating (POFBG) responds to the water conten...
We report on the temperature response of FBGs recorded in pure PMMA and TOPAS holey fibers. The grat...
Polymer micro-fibers with inscribed Bragg gratings are reported in this paper. By implementing a two...
We investigate the use of an arrayed waveguide grating (AWG) to interrogate both fibre Bragg grating...
Composite materials are extensively used in a wide array of application markets by virtue of their s...
We report the fabrication and characterization of a fiber Bragg grating (FBG) with 870 nm resonance ...
We experimentally demonstrate the first polymer optical fiber Bragg grating inscribed with only one ...
In this paper, we present two different ways to embed polymer fibre Bragg gratings (FBGs) into polym...
Author name used in this publication: Zhi Feng ZhangAuthor name used in this publication: Xiao Ming ...