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Detailed theoretical investigation of the input power dynamic range for gain-clamped semiconductor optical amplifier gates at 10 Gb/s

机译:增益钳位的半导体光放大器门在10 Gb / s时的输入功率动态范围的详细理论研究

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摘要

A detailed theoretical investigation of the input power dynamic range for gain-clamped semiconductor optical amplifier (GC-SOA) gates at 10 Gb/s is presented. We show that although the gain is clamped, the dynamic changes of the carrier distribution in the GC-SOA causes pattern effects on a time scale given by the relaxation frequency of the GC-SOA. Combined with a higher noise figure compared to a conventional SOA, this results in a dynamic range only /spl sim/0.5 dB better than for an optimized SOA gate.
机译:提出了对增益钳位的半导体光放大器(GC-SOA)门在10 Gb / s时输入功率动态范围的详细理论研究。我们表明,尽管增益受到限制,但GC-SOA中载流子分布的动态变化会在时间尺度上引起图案效应,该时间尺度由GC-SOA的弛豫频率给出。与传统的SOA相比,再加上更高的噪声系数,这导致动态范围仅比优化SOA门高/ spl sim / 0.5 dB。

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