DocumentCode :
1985043
Title :
Experimental investigation of slow light phenomenon in photonic crystal waveguide line defect laser
Author :
Xing, Mingxin ; Ren, Gang ; Chen, Wei ; Zhou, Wenjun ; Wang, Hailing ; Chen, Linghui ; Zheng, Wanhua
Author_Institution :
Nano-Optoelectron. Lab., Chinese Acad. of Sci., Beijing
fYear :
2008
fDate :
9-12 Nov. 2008
Firstpage :
177
Lastpage :
180
Abstract :
The guide mode whose frequency locates in the band edge in photonic crystal single line defect waveguide has very low group velocity. So the confinement and gain of electromagnetic field in the band edge are strongly enhanced. Photonic crystal waveguide laser is fabricated and the slow light phenomenon is investigated. The laser is pumped by pulsed pumping light at 980 nm whose duty ratio is 0.05%. The active layer in photonic crystal slab is InGaAsP multiple quantum well. Light is transmitted by a photonic crystal chirp waveguide in one facet of the laser. Then the output light is coupled to a fiber and the character of laser is analysis by an optical spectrometer. It is found that single mode and multimode happens with different power of pumping light. Meanwhile the plane wave expansion and finite-difference time-domain methods are used to simulate the phenomenon of slow light. And the result of the experiment is compared with the theory which proves the slow light results in lasing oscillation.
Keywords :
III-V semiconductors; finite difference time-domain analysis; gallium arsenide; gallium compounds; indium compounds; laser modes; nonlinear optics; optical pumping; photonic crystals; quantum well lasers; waveguide lasers; InGaAsP; InGaAsP multiple quantum well; band edge; finite-difference time-domain method; group velocity; laser modes; lasing oscillation; photonic crystal waveguide line defect laser; plane wave expansion method; pulsed pumping light; slow light; wavelength 980 nm; Electromagnetic waveguides; Fiber lasers; Laser excitation; Laser modes; Optical waveguides; Photonic crystals; Pump lasers; Quantum well lasers; Slow light; Waveguide lasers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Metamaterials, 2008 International Workshop on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-2608-9
Electronic_ISBN :
978-1-4244-2609-6
Type :
conf
DOI :
10.1109/META.2008.4723569
Filename :
4723569
Link To Document :
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