Analysis of a dephased complex-coupled distributed-feedback laser by the power-series method

Authors
Citation
M. Arif et Ma. Karim, Analysis of a dephased complex-coupled distributed-feedback laser by the power-series method, APPL OPTICS, 39(6), 2000, pp. 954-961
Citations number
21
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science","Optics & Acoustics
Journal title
APPLIED OPTICS
ISSN journal
00036935 → ACNP
Volume
39
Issue
6
Year of publication
2000
Pages
954 - 961
Database
ISI
SICI code
0003-6935(20000220)39:6<954:AOADCD>2.0.ZU;2-U
Abstract
A novel power-series method to solve the couple-wave equations is introduce d. The method is used to calculate the threshold gain margins of a complex- coupled distributed-feedback laser as functions of the ratio of gain coupli ng to index coupling (\kappa(g)\/\kappa(n)\) and of the phase difference be tween the index and the gain gratings. For coupling coefficient \kappa\iota < 0.9 the laser shows a diode degeneracy at specific values of the ratio \ kappa(g)\/\kappa(n)\ cleaved facets. At phase differences pi/2 and 3 pi/2 b etween the gain and the index gratings, an antireflection coated complex-co upled laser becomes multimode, and a different mode starts to lase. The eff ect of facet reflectivity (both magnitude and phase) on the gain margin of a complex-coupled DFB laser is also investigated. Although the gain margin varies slowly with the magnitude of the facet's reflectivity, it shows larg e variations as a function of the phase, Spatial hole burning was found to be minimum at phase difference n/pi, n = 0, 1..., and maximum at phase diff erences pi/2 and 3 pi/2. (C) 2000 Optical Society of America.