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Numerical analysis of gain saturation, noise figure, and carrier distribution for quantum-dot semiconductor-optical amplifiers

机译:量子点半导体光放大器增益饱和度,噪声系数和载流子分布的数值分析

摘要

The gain saturation behaviors and noise figure are numerically analyzed for quantum-dot semiconductor optical amplifiers (QD-SOAs). The carrier and photon distributions in the longitudinal direction as well as the photon energy dependent facet reflectivity are accounted in the rate equations, which are solved with output amplified spontaneous emission spectrum as iterative variables. The longitudinal distributions of the occupation probabilities and spectral-hole burning are presented for electrons in the excited and ground states of quantum dots. The saturation output power 19.7 dBm and device gain 20.6 dB are obtained for a QD-SOA with the cavity length of 6 rum at the bias current of 500 mA. The influences of them electron intradot relaxation time and the QD capture time on the gain spectrum are simulated with the relaxation time of 1, 30, and 60 ps and capture time of 1, 5, and 10 ps. The noise figure as low as 3.5 dB is expected due to the strong polarization sensitive spontaneous emission. The characteristics of gain saturation and noise figure versus input signal power for QD-SOAs are similar to that of semiconductor. linear optical amplifiers with gain clamping by vertical laser fields.
机译:对量子点半导体光放大器(QD-SOA)的增益饱和行为和噪声系数进行了数值分析。在速率方程中考虑了纵向上的载流子和光子分布以及与光子能量相关的小面反射率,这些方程通过输出放大的自发发射光谱作为迭代变量来求解。给出了处于量子点的激发态和基态的电子的占据概率和光谱孔燃烧的纵向分布。对于QD-SOA,在500 mA的偏置电流下,腔长为6 rum的QD-SOA获得了19.7 dBm的饱和输出功率和20.6 dB的器件增益。以1、30和60 ps的弛豫时间以及1、5和10 ps的捕获时间来模拟它们的电子点弛豫时间和QD捕获时间对增益谱的影响。由于强烈的偏振敏感自发辐射,预计噪声系数低至3.5 dB。 QD-SOA的增益饱和度和噪声系数与输入信号功率的关系与半导体相似。具有垂直激光场增益钳位的线性光学放大器。

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  • 作者

    Xiao JL; Huang YZ;

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  • 年度 2008
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