Javascript must be enabled to continue!
Relationship Between Fiber Gratings Reflectivity and Laser Fabrication Parameters
View through CrossRef
This study concentrates to investigate the relationship between laser fabrication parameters and reflectivity of fiber gratings. The fiber Bragg grating system, comprising Excimer Laser, Mask Aligner, Optical Spectrum Analyzer and Tunable Laser Source was utilized to fabricate the fiber gratings. A series of experiments were carried out for the fabrication of fiber gratings and to observe the effect of laser fabrication parameters on the reflectivity of fiber gratings. These samples were fabricated with different reflectivitys ranging from 27 to 93% at constant pulse rate i.e. 1Hz. The amount of reflectivity is the extent to which the index modulation in the fiber core changes. The higher the reflectivity of a fiber grating, the more microstructural changes occur within the lattice of the photosensitive core and the more the residual axial stress builds up within the cross section of the fiber. Here, we discussed only two laser fabrications parameters i.e. effect of pulse energy on reflectivity of fiber grating and effect of exposure time on reflectivity of fiber grating/Bragg wavelength. Based on the results of this study, it is inferred that reflectivity is exponentially increased, as the pulse energy increase at constant UV exposure time and attained saturation at pulse energy i.e. 165mJ. The low pulse energy produces a low reflectivity fiber Bragg grating even after a longer UV exposure time. It is also concluded that both reflectivity and Bragg wavelength are increased rapidly in the beginning with the increase of UV exposure time and then become saturated at UV exposure time i.e. 110min, even though pulse energy is constant. It means that the induced index of modulation was increased with the increasing of UV exposure time.
Bentham Science Publishers Ltd.
Title: Relationship Between Fiber Gratings Reflectivity and Laser Fabrication Parameters
Description:
This study concentrates to investigate the relationship between laser fabrication parameters and reflectivity of fiber gratings.
The fiber Bragg grating system, comprising Excimer Laser, Mask Aligner, Optical Spectrum Analyzer and Tunable Laser Source was utilized to fabricate the fiber gratings.
A series of experiments were carried out for the fabrication of fiber gratings and to observe the effect of laser fabrication parameters on the reflectivity of fiber gratings.
These samples were fabricated with different reflectivitys ranging from 27 to 93% at constant pulse rate i.
e.
1Hz.
The amount of reflectivity is the extent to which the index modulation in the fiber core changes.
The higher the reflectivity of a fiber grating, the more microstructural changes occur within the lattice of the photosensitive core and the more the residual axial stress builds up within the cross section of the fiber.
Here, we discussed only two laser fabrications parameters i.
e.
effect of pulse energy on reflectivity of fiber grating and effect of exposure time on reflectivity of fiber grating/Bragg wavelength.
Based on the results of this study, it is inferred that reflectivity is exponentially increased, as the pulse energy increase at constant UV exposure time and attained saturation at pulse energy i.
e.
165mJ.
The low pulse energy produces a low reflectivity fiber Bragg grating even after a longer UV exposure time.
It is also concluded that both reflectivity and Bragg wavelength are increased rapidly in the beginning with the increase of UV exposure time and then become saturated at UV exposure time i.
e.
110min, even though pulse energy is constant.
It means that the induced index of modulation was increased with the increasing of UV exposure time.
Related Results
LEO-to-GNSS Laser Interferometer for Space Geodesy with Laser DORIS and Laser SAR
LEO-to-GNSS Laser Interferometer for Space Geodesy with Laser DORIS and Laser SAR
In order to increase the accuracy of precise orbit determination for a single satellite or satellites in LEO formation, we propose using a LEO-to-GNSS laser interferometer, what we...
Laser Spectrometric Techniques in Analytical Atomic Spectrometry
Laser Spectrometric Techniques in Analytical Atomic Spectrometry
Abstract
Laser light has a number of spectacular properties that make it useful for analytical spectrometry. One is that it has a high directionality (i.e. i...
Annealing of Bragg gratings in hydrogen-loaded optical fiber
Annealing of Bragg gratings in hydrogen-loaded optical fiber
We have conducted a detailed study of the thermal stability of Bragg gratings written in hydrogen-loaded and unloaded germanium-doped optical fiber. Interference of either continuo...
Recording of high efficiency volume Bragg gratings in a photopolymer using diffraction from very weak pre-recorded gratings
Recording of high efficiency volume Bragg gratings in a photopolymer using diffraction from very weak pre-recorded gratings
AbstractA two-step method of writing high diffraction efficiency holographic gratings in photopolymer using just one writing beam during the second step is discussed. The technique...
Design and fabrication of novel optical fiber architectures for sensing applications
Design and fabrication of novel optical fiber architectures for sensing applications
Optical fiber sensors have experienced an important progress in recent years with the employment of structures based on gratings, interferometers or electromagnetic resonances, amo...
Comparative study of near-infrared pulsed laser machining of carbon fiber reinforced plastics
Comparative study of near-infrared pulsed laser machining of carbon fiber reinforced plastics
<p>Carbon fiber-reinforced plastics (CFRPs) have gained widespread popularity as a lightweight, high-strength alternative to traditional materials. The unique anisotropic pro...
Measurements of transient reflectance spectra of dynamic gratings by optical frequency modulation
Measurements of transient reflectance spectra of dynamic gratings by optical frequency modulation
The characteristics of dynamic gratings greatly affect the linewidth and mode stability of ultra-narrow linewidth erbium-doped fiber (EDF) lasers. In this paper, we propose a novel...
Excimer laser micromachining of MEMS materials
Excimer laser micromachining of MEMS materials
Conventional photolithography-based microfabrication techniques are limited to two-dimensional fabrication and only particular materials can be used. Excimer laser micromachining e...

