DocumentCode :
1255365
Title :
Analysis of radiation mode effects on oscillating properties of DFB lasers
Author :
Kinoshita, Junichi
Author_Institution :
Dept. of Optoelectron. Semicond. Eng., Toshiba Corp., Kawasaki, Japan
Volume :
35
Issue :
11
fYear :
1999
fDate :
11/1/1999 12:00:00 AM
Firstpage :
1569
Lastpage :
1583
Abstract :
The effects of radiation mode on the oscillating properties of distributed feedback (DFB) lasers with second-order corrugations are analyzed for designing a new type of DFB laser. A formulation based on the transfer matrix technique is applied to calculating Streifer´s ζ-terms added to the coupled-wave equations. These terms represent the effects of radiation and evanescent modes. This formulation greatly simplifies the analysis of distributed resonance along multilayered waveguide structures with arbitrary-shaped second-order corrugations. The effects of vertical resonance are also incorporated into the formulation. Various types of DFB lasers with phase-shifted second-order corrugations are analyzed using this method. It is found that the phase shift and the blaze of the corrugations greatly affect the longitudinal mode selectivity. A new phase-shift DFB laser structure with two complementary blazing regions connected at the shift is proposed. It is demonstrated that this structure has small radiation loss resulting in low-threshold performance despite employing second-order corrugations
Keywords :
III-V semiconductors; distributed feedback lasers; gallium arsenide; gallium compounds; indium compounds; laser theory; optical multilayers; semiconductor device models; semiconductor lasers; waveguide lasers; DFB lasers; InGaAsP-InP DFB semiconductor waveguide laser; Streifer´s ζ-terms; arbitrary-shaped second-order corrugations; complementary blazing regions; coupled-wave equations; distributed feedback lasers; distributed resonance; evanescent modes; longitudinal mode selectivity; low-threshold performance; multilayered waveguide structures; oscillating properties; phase-shift DFB laser structure; phase-shifted second-order corrugations; radiation mode effects; second-order corrugations; small radiation loss; transfer matrix technique; Distributed feedback devices; Equations; Fiber lasers; Gratings; Laser feedback; Laser modes; Laser theory; Transmission line matrix methods; Vertical cavity surface emitting lasers; Waveguide lasers;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.798078
Filename :
798078
Link To Document :
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