Title :
Threshold and above-threshold analysis of corrugation-pitch-modulated DFB lasers with inhomogeneous coupling coefficient
Author_Institution :
Lab. RESO, Ecole Nat. d´´Ingenieurs de Brest, France
fDate :
12/1/1997 12:00:00 AM
Abstract :
DFB lasers with longitudinal variations in their grating pitch and, consequently, their Bragg wavenumber (corrugation-pitch-modulated or CPM-DFB) can achieve single-mode oscillation with good threshold gain margins and flatter longitudinal photon-density distributions than conventional quarter-wave-shift (QWS) DFB lasers. Moreover, substantial improvements of these two characteristics are provided by adequate variation of the coupling coefficient κ along the cavity. In the paper, a three-section corrugation-pitch-modulated DFB laser with distributed-coupling-coefficient (DCC-CPM-DFB) is studied extensively. Threshold and above-threshold numerical simulations show that these structures can achieve very good single-mode operation by correct optimisation of the Bragg detuning and coupling strength profile at threshold and can maintain these characteristics up to high injection currents
Keywords :
coupled mode analysis; diffraction gratings; distributed feedback lasers; laser modes; laser theory; laser tuning; optical modulation; optimisation; Bragg detuning; Bragg wavenumber; DFB lasers; above-threshold analysis; above-threshold numerical simulations; correct optimisation; corrugation-pitch-modulated; corrugation-pitch-modulated DFB lasers; coupling strength profile; distributed-coupling-coefficient; good threshold gain margins; grating pitch; high injection currents; inhomogeneous coupling coefficient; laser theory; longitudinal photon-density distributions; longitudinal variations; single-mode oscillation; three-section corrugation-pitch-modulated DFB laser; very good single-mode operation;
Journal_Title :
Optoelectronics, IEE Proceedings -
DOI :
10.1049/ip-opt:19971345