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Modeling of semiconductor optical amplifiers for interferometric switching applications

机译:用于干涉式开关应用的半导体光放大器建模

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Summary form only given. Various applications of all-optical signal processing, e.g, demultiplexing in optical time-division multiplexing (OTDM) systems or optical sampling, can be accomplished by all-optical switches based on semiconductor optical amplifiers (SOAs) in interferometric configurations. To optimize such switching devices, it is useful to have a model which describes the temporal characteristics of the switches accurately. The SOA model, which we present, takes the pulse propagation and the gain dynamics into account. The gain dynamics is determined by carrier density modulation (also called carrier density pulsation, CDP) and carrier heating (CH), calculated in separate rate equations.
机译:仅提供摘要表格。全光信号处理的各种应用,例如,光时分复用(OTDM)系统中的多路分解或光采样,都可以通过基于半导体光放大器(SOA)的干涉仪配置的全光开关来完成。为了优化这种开关设备,有用的是具有一个模型,该模型可以准确地描述开关的时间特性。我们提出的SOA模型考虑了脉冲传播和增益动态特性。增益动态取决于载流子密度调制(也称为载流子密度脉动,CDP)和载流子加热(CH),它们是在单独的速率方程式中计算得出的。

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