Title :
Characteristics and design of coated LPFG sensor based on mode transition
Author :
Zhengtian Gu ; Jinlong Lan ; Haiyun Chen ; Kan Gao
Author_Institution :
Lab. of Photo-Electr. Functional Films, Univ. of Shanghai for Sci. & Tech., Shanghai, China
Abstract :
The mode transition in a coated long-period fiber grating (LPFG) has been studied based on coupled-mode theory. The response of cladding mode effective index with increasing overlay thickness is analyzed. The lower order modes are transferred to the overlay, and the higher order modes replace the lower order modes order by order and continue to propagate in the cladding. Further, the transmission spectrum of the coated LPFG is investigated while the overlay thickness is located in mode transition and the surrounding region, the amplitude of attenuation peak of the cladding mode which will enter the overlay decreases rapidly and the peak position of adjacent higher cladding mode shift towards the former lower mode. To design high sensitivity LPFG sensor, the optimal overlay thickness is selected to ensure that the coated LPFG is located in the mode fast transition region. Finally, the response characteristics of film refractive index of coated LPFG were investigated for two typical cladding modes, and two kinds of the sensor sensitivity are defined and calculated. The results indicate that the resolution of film refractive index in mode transition can be available to 10-6 and 10-7 respectively, if the sensor is detected by transmittance change and wavelength shift.
Keywords :
diffraction gratings; fibre optic sensors; infrared spectra; optical design techniques; optical fibre cladding; refractive index; cladding mode effective index; coated LPFG sensor design; coated long-period fiber grating; coupled-mode theory; film refractive index; mode transition; overlay thickness; response characteristics; transmission spectrum; wavelength shift; Attenuation; Fiber gratings; Films; Indexes; Optical fiber sensors; Refractive index; Sensitivity; Coated Long-period fiber grating; mode transition; sensitivity; transmission spectrum;
Conference_Titel :
Numerical Simulation of Optoelectronic Devices (NUSOD), 2013 13th International Conference on
Conference_Location :
Vancouver, BC
Print_ISBN :
978-1-4673-6309-9
DOI :
10.1109/NUSOD.2013.6633119