Long period gratings (LPGs) inscribed in single mode fibers (SMFs) using CO2 laser irradiation were modelled numerically using the coupled mode method. The model considers the specifications of the inscription technique, such as the shape of the refractive index modulation that mimics the circularly symmetric point-to-point laser irradiation profile. A simple expression for predicting the resonant wavelength was obtained assuming a two-mode coupling model. However, to explain the spectra of the experimental LPGs, it was necessary to assume a reasonably high refractive index change and a multimode coupling model. Furthermore, using the developed model and a genetic algorithm to fit experimental resonances to simulated ones, we were able to e...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
This paper reports a long-period fiber gratings(LPFG) fabricated on a double-clad fiber (DCF) by the...
Author name used in this publication: D. N. Wang2008-2009 > Academic research: refereed > Publicatio...
We report a new method to measure the CO2-laser-irradiation-induced refractive index modulation in t...
This paper presents a systematic review of long period fiber gratings (LPFGs) written by the CO2 las...
D.Ing.Optical fibre-based devices (e.g. fibre gratings) play an important role in the optical com- m...
The central wavelengths of the resonance bands are critical aspect of the performance of long period...
Long-period grating (LPG) fabricated in a graded-index multimode fiber (MMF) by deforming the geomet...
The distinct behaviour of femtosecond laser inscribed long period gratings, with a non-uniform index...
It is known that optical fiber long period gratings (LPGs) exhibit their highest sensitivity to envi...
AbstractThis paper demonstrates the spectrums of a long period fiber grating pair (LPGP) by changing...
There is a range of ways to couple light in a single mode fiber (SMF) from core mode to cladding mod...
Abstract — We present a method to manufacture symmetrically written uniform long-period fibre gratin...
Long period gratings (LPGs) as a sensing platform have the potential for multi-parameter measurement...
Fiber optical-based sensor system offers many distinctive advantages over conventional electrical-ba...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
This paper reports a long-period fiber gratings(LPFG) fabricated on a double-clad fiber (DCF) by the...
Author name used in this publication: D. N. Wang2008-2009 > Academic research: refereed > Publicatio...
We report a new method to measure the CO2-laser-irradiation-induced refractive index modulation in t...
This paper presents a systematic review of long period fiber gratings (LPFGs) written by the CO2 las...
D.Ing.Optical fibre-based devices (e.g. fibre gratings) play an important role in the optical com- m...
The central wavelengths of the resonance bands are critical aspect of the performance of long period...
Long-period grating (LPG) fabricated in a graded-index multimode fiber (MMF) by deforming the geomet...
The distinct behaviour of femtosecond laser inscribed long period gratings, with a non-uniform index...
It is known that optical fiber long period gratings (LPGs) exhibit their highest sensitivity to envi...
AbstractThis paper demonstrates the spectrums of a long period fiber grating pair (LPGP) by changing...
There is a range of ways to couple light in a single mode fiber (SMF) from core mode to cladding mod...
Abstract — We present a method to manufacture symmetrically written uniform long-period fibre gratin...
Long period gratings (LPGs) as a sensing platform have the potential for multi-parameter measurement...
Fiber optical-based sensor system offers many distinctive advantages over conventional electrical-ba...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
This paper reports a long-period fiber gratings(LPFG) fabricated on a double-clad fiber (DCF) by the...
Author name used in this publication: D. N. Wang2008-2009 > Academic research: refereed > Publicatio...