DocumentCode :
34462
Title :
An Equivalent-Asymmetric Coupling Coefficient DFB Laser With High Output Efficiency and Stable Single Longitudinal Mode Operation
Author :
Junshou Zheng ; Nannan Song ; Yunshan Zhang ; Yuechun Shi ; Song Tang ; Lianyan Li ; Renjia Guo ; Xiangfei Chen
Author_Institution :
Microwave Photonics Technol. Lab., Nanjing Univ., Nanjing, China
Volume :
6
Issue :
6
fYear :
2014
fDate :
Dec. 2014
Firstpage :
1
Lastpage :
9
Abstract :
An equivalent-asymmetric coupling coefficient (EACC) distributed feedback laser (DFB) semiconductor laser with equivalent-half apodization grating (EHAG) structure is proposed and experimentally demonstrated for the first time; the EHAG profile is equivalently realized by linearly changing the duty cycle of a sampled Bragg grating along the one half cavity, while that of the other half cavity is kept uniform. Compared with the equivalent-symmetric coupling coefficient DFB laser, the simulated intensity distribution of the EACC DFB laser shows that the light power is concentrated not only on near the phase-shift region and that the power at the front end is enlarged. Therefore, the longitudinal spatial hole burning may be reduced; the output efficiency and the single-mode stability may be improved. The experimental results show that the output power ratio between the front and rear facets is about 2.17 and the side-mode suppression ratios are over 50 dB when the injection current is in the range from 60 to 200 mA.
Keywords :
Bragg gratings; diffraction gratings; distributed feedback lasers; laser modes; laser stability; optical couplers; optical hole burning; semiconductor lasers; Bragg grating; DFB laser; EACC; EHAG; current 60 mA to 200 mA; distributed feedback laser; equivalent-asymmetric coupling coefficient; equivalent-half apodization grating; high output efficiency; injection current; longitudinal spatial hole burning; output power ratio; side-mode suppression ratios; simulated intensity distribution; single-mode stability; stable single longitudinal mode operation; Distributed feedback devices; Semiconductor lasers; Asymmetric coupling coefficient; distributed feedback laser; semiconductor laser; single longitudinal mode operation;
fLanguage :
English
Journal_Title :
Photonics Journal, IEEE
Publisher :
ieee
ISSN :
1943-0655
Type :
jour
DOI :
10.1109/JPHOT.2014.2368776
Filename :
6951415
Link To Document :
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