Share Email Print
cover

Proceedings Paper

Analytical expressions, modeling, and simulations of intensity and frequency fluctuation in a directly modulated semiconductor laser
Author(s): Samy S.A. Ghoniemy; Leonard MacEachern; Samy A. Mahmoud
Format Member Price Non-Member Price
PDF $14.40 $18.00

Paper Abstract

Analytical expressions for the intensity and frequency/phase noise of single mode semiconductor lasers based on quantum-mechanical rate equations are derived. Correlated photons, electrons, and phase Langevin noise sources and their auto and cross-correlation relations are presented along with a novel self-consistent normalized laser model that includes the laser's correlated noise sources. A Symbolically Defined Device (SDD) is constructed using the proposed normalized model and implemented in Agilent's Advanced Design System (ADS) CAD tool. Dynamic laser characteristics are predicted using the SDD implementation for 1300 nm InGaAsP/InP lasers. The results of time domain dynamic simulations of photons, carriers, optical output power, and phase - with and without the effects of the noise - are presented. Simulation results are used to show the effects of random noise on both the phase and optical power output of semiconductor lasers. Simulation results are analyzed to demonstrate the resonance frequency shift dependence on the bias current levels, the relation between the frequency response and the bias current and the dependence of the laser line width broadening on the frequency fluctuations. Comparison between the presented results and other published results (simulations and measurements) show good agreement while achieving simulation time enhancement. The suitability of the proposed models for the study and characterization of the performance of complete systems in both circuit and system simulations is examined.

Paper Details

Date Published: 16 May 2003
PDF: 10 pages
Proc. SPIE 5111, Fluctuations and Noise in Photonics and Quantum Optics, (16 May 2003); doi: 10.1117/12.500190
Show Author Affiliations
Samy S.A. Ghoniemy, Carleton Univ. (Canada)
Leonard MacEachern, Carleton Univ. (Canada)
Samy A. Mahmoud, Carleton Univ. (Canada)


Published in SPIE Proceedings Vol. 5111:
Fluctuations and Noise in Photonics and Quantum Optics
Derek Abbott; Jeffrey H. Shapiro; Yoshihisa Yamamoto, Editor(s)

© SPIE. Terms of Use
Back to Top