DocumentCode
3609643
Title
A Horn Ridge Waveguide DFB Laser for High Single Longitudinal Mode Yield
Author
Cheng Ke ; Xun Li ; Yanping Xi
Author_Institution
Wuhan Nat. Lab. for Optoelectron., Huazhong Univ. of Sci. & Technol., Wuhan, China
Volume
33
Issue
24
fYear
2015
Firstpage
5032
Lastpage
5037
Abstract
In this paper, we propose a novel approach to enhance the single longitudinal mode (SLM) yield for uniform grating distributed feedback (DFB) laser diode by breaking the dual-mode degeneracy. By introducing a horn ridged waveguide (HRW) in replace of the conventional straight ridge waveguide (RW), we create an effectively chirped grating as well as a longitudinally varying modal gain. As such, the field distribution along the laser cavity is different for the two possibly lasing longitudinal modes on each side of the Bragg stopband, and the field having a larger overlap with the gain becomes the only dominant lasing mode. We have optimized the ridge width of HRW-DFB lasers with different normalized coupling coefficients (κL) in terms of the SLM yield. Our experimental results show that the SLM yield of the HRW-DFB laser with κL of 2.9 can reach 65% as opposed to 19% obtained by the conventional RW-DFB lasers fabricated on the same wafer.
Keywords
chirp modulation; diffraction gratings; distributed feedback lasers; laser beams; laser cavity resonators; laser modes; ridge waveguides; semiconductor lasers; waveguide lasers; Bragg stopband; HRW-DFB lasers; SLM yield; chirped grating; conventional RW-DFB lasers; conventional straight ridge waveguide; dual-mode degeneracy; field distribution; high single longitudinal mode yield; horn ridge waveguide DFB laser; laser cavity; lasing longitudinal modes; longitudinally varying modal gain; normalized coupling coefficients; ridge width; uniform grating distributed feedback laser diode; Cavity resonators; Chirp; Coatings; Gratings; Indexes; Optical waveguides; Waveguide lasers; Distributed feedback lasers; Semiconductor lasers; semiconductor lasers; single mode;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2015.2496602
Filename
7314873
Link To Document