Title of article
Theory of pulse propagation and four-wave mixing in a quantum dot semiconductor optical amplifier
Author/Authors
Flayyih، نويسنده , , Ahmed H. and Al-Khursan، نويسنده , , Amin H. Al-Khursan، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2014
Pages
8
From page
946
To page
953
Abstract
A theory, combining the relations of pulse traveling into quantum dot (QD) semiconductor optical amplifier (SOA) with the four-wave mixing (FWM) theory in these SOAs, is developed. Carrier density pulsation (CDP), carrier heating (CH), and spectral hole burning (SHB) contributions on FWM efficiency are discussed. Effect of QD ground state and wetting layer are included. An additional parameter appears in the gain integral relation of QD SOAs. An equation formulating pulses in the QD SOAs is introduced. We have found that FWM in QD SOAs is detuning and is pulse width dependent. For short pulses, CH is dominant at high detunings (10–100 GHz) while at higher detunings (>100 GHz) the SHB is the dominant one. Undesired paunch behavior is shown in QD SOAs then, CDP must be reduced.
Keywords
spectral hole burning , Quantum dot SOA , four-wave mixing
Journal title
Current Applied Physics
Serial Year
2014
Journal title
Current Applied Physics
Record number
1792148
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