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Pulse Amplification and Gain Recovery in Semiconductor Optical Amplifiers: A Systematic Analytical Approach

机译:半导体光放大器中的脉冲放大和增益恢复:系统分析方法

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Short-pulse propagation in semiconductor optical amplifiers (SOAs) has been widely studied for applications in optical signal processing and optical communications areas. Even though it is possible to integrate differential equations numerically, such implementations may not provide adequate insight into the device operation. We propose a systematic way to construct analytical solutions for the gain-recovery dynamics of SOAs and show excellent agreement with numerically integrated results. Our approach makes use of the multiple-scale technique. The main contribution of this work is to put earlier heuristic approaches into a firm theoretical base so that approximate analytical solutions for carrier-recovery dynamics can be systematically constructed for different variants of SOA models. We derive analytical solutions for the signal gain and pulse-energy gain at an arbitrary point with the SOA waveguide. Surpassing previous work in this area, we also show that it is possible to obtain analytical solutions when waveguide attenuation is not negligible.
机译:半导体光放大器(SOA)中的短脉冲传播已被广泛研究用于光信号处理和光通信领域。即使可以在数值上积分微分方程,这种实现也可能无法充分了解设备操作。我们提出了一种系统的方法来构造SOA增益恢复动力学分析解决方案,并与数值积分结果显示出极好的一致性。我们的方法利用了多尺度技术。这项工作的主要贡献是将较早的启发式方法置于牢固的理论基础中,以便可以针对SOA模型的不同变体系统地构建载流子恢复动力学的近似解析解。我们利用SOA波导得出了任意点的信号增益和脉冲能量增益的解析解。超越了该领域的先前工作,我们还表明,当波导衰减不可忽略时,可以获得解析解。

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