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Four-wave mixing and rabi oscillations in quantum-dot semiconductor optical amplifiers

机译:量子点半导体光放大器中的四波混合和Rabi振荡

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Using a self-consistent delay-differential-equation model for the description of the nonlinear light propagation in InAs/InGaAs quantum-dot-in-a-well semiconductor optical amplifiers, we analyze the amplifier in a four-wave-mixing setup in terms of the conversion efficiency. Our model allows us to extract the hierarchy of nonlinear effects that constitute the four-wave-mixing process. We show that spectral hole burning in the quantum-dot medium facilitates wavelength conversion over a spectral detuning of several THz, whereas the effect of carrier heating and global carrier-density pulsations is found to be negligible. Furthermore we show that for high optical field amplitudes the emergence of Rabi oscillations leads to a flattening of the conversion efficiency, potentially allowing for ultra-broadband wavelength conversion and frequency comb generation.
机译:使用自一致的延迟差分方程模型,用于描述INAS / INGAAS量子点井半导体光放大器中的非线性光传播,我们在四波混合设置中分析放大器转换效率。我们的模型允许我们提取构成四波混合过程的非线性效应的层次结构。我们表明,在量子点介质中燃烧的光谱孔促进了几个THz的光谱静脉上的波长转换,而发现载体加热和全局载流子密度脉动的效果可忽略不计。此外,我们表明,对于高光场振荡,Rabi振荡的出现导致转换效率的趋势,可能允许超宽带波长转换和频率梳状产生。

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