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Saturation effects in nondegenerate four-wave mixing between short optical pulses in semiconductor laser amplifiers

机译:半导体激光放大器中短光脉冲之间的非简并四波混合中的饱和效应

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We present a simple, yet powerful method for calculating nonlinear pulse propagation and pulse interaction in active semiconductor waveguides. The model is based on the density matrix equations, which under realistic operation conditions are shown to lead to an accurate description of the material gain, that includes the dynamics of carrier heating and spectral-hole burning (SHB). A very general and compact description of the amplifier dynamics in terms of an integral equation is derived. The model is used to analyze saturation effects in short pulse amplification and nondegenerate four-wave mixing. An analytical expression for the four-wave mixing response is derived, which extends previous results to the case of short and intense pulses. Saturation of the four-wave mixing signal is shown to be strongly pulsewidth dependent due to ultrafast gain dynamics, and self-phase modulation is shown to give excessive broadening of the conjugate pulse. Finally, the impacts on the noise characteristics are calculated and shown to explain recent experimental results.
机译:我们提出了一种简单而强大的方法来计算有源半导体波导中的非线性脉冲传播和脉冲相互作用。该模型基于密度矩阵方程式,该方程式在实际操作条件下显示出对材料增益的准确描述,其中包括载流子加热和光谱孔燃烧(SHB)的动力学。得出了关于积分方程的放大器动力学的非常一般和紧凑的描述。该模型用于分析短脉冲放大和非简并四波混频中的饱和效应。导出了四波混频响应的解析表达式,将先前的结果扩展到短脉冲和强脉冲的情况。由于超快增益动态,四波混合信号的饱和度显示出与脉冲宽度密切相关,而自相位调制显示出共轭脉冲的过度展宽。最后,计算了对噪声特性的影响,并说明了最近的实验结果。

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