DocumentCode
48240
Title
Optical Gain, Phase, and Refractive Index Dynamics in Photonic Crystal Quantum-Dot Semiconductor Optical Amplifiers
Author
Taleb, Hussein ; Abedi, Kambiz
Author_Institution
Dept. of Electr. Eng., Shahid Beheshti Univ., Tehran, Iran
Volume
50
Issue
8
fYear
2014
fDate
Aug. 2014
Firstpage
605
Lastpage
612
Abstract
In this paper, the gain, phase, and refractive index dynamics of photonic crystal quantum-dot semiconductor optical amplifiers (PC-QDSOAs) are investigated for the first time. For this purpose, we establish a comprehensive nonlinear state space model with 1088 state variables to simulate the carrier dynamics of the inhomogeneously broadened InAs/GaAs QD active region embedded in a flat-band slow-light photonic crystal waveguide. The gain and phase recovery responses are monitored during the amplification of an ultrashort pump pulse. Simulation results show that changes in refractive index in the PC-QDSOA active region are much stronger than the index changes in the conventional QDSOAs. In addition, the gain and phase recovery time in PC-QDSOAs are similar to those in the conventional QDSOAs based on ridge waveguide structures. Also, we found that the injected current and the consumed power in PC-QDSOAs can be two orders of magnitude less than those values in the conventional QDSOAs.
Keywords
III-V semiconductors; gallium arsenide; high-speed optical techniques; indium compounds; nonlinear optics; optical pumping; optical waveguides; photonic crystals; quantum dot lasers; refractive index; ridge waveguides; semiconductor quantum dots; slow light; InAs-GaAs; PC-QDSOA; carrier dynamics; comprehensive nonlinear state space model; consumed power; flat-band slow-light photonic crystal waveguide; inhomogeneously broadened InAs-GaAs QD active region; injected current; optical gain; phase recovery time; photonic crystal quantum-dot semiconductor optical amplifiers; refractive index dynamics; ridge waveguide structures; ultrashort pump pulse; Dispersion; Gallium arsenide; Indexes; Optical refraction; Optical waveguides; Refractive index; Slabs; Nonlinear state space model (NSSM); photonic crystal waveguide (PCW); quantum-dot (QD); semiconductor optical amplifier (SOA); slow light (SL);
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.2014.2329502
Filename
6832473
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