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Nonlinear polarization rotation induced by ultrashort optical pulses in a semiconductor optical amplifier

机译:半导体光放大器中超短光脉冲引起的非线性偏振旋转

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We use a new rate-equation model for the propagation of sub-picosecond polarized optical pulses in a semiconductor optical amplifier (SOA). This model is based on the decomposition of the polarized optical field into TE and TM components that interact via the gain saturation, and accounts for two-photon absorption, free-carrier absorption, self-and cross-phase modulation, carrier heating, and spectral and spatial hole burning. For the first time, using our model, we have obtained numerical results for the nonlinear polarization rotation in pump-probe experiments with 200 fs pulses. These results are in good agreement with reported experimental measurements.
机译:我们使用一种新的速率方程模型在半导体光放大器(SOA)中传播亚皮秒级偏振光脉冲。该模型基于偏振光分解为通过增益饱和相互作用的TE和TM分量,并解释了两光子吸收,自由载流子吸收,自相位和交叉相位调制,载流子加热和光谱和空洞燃烧。使用我们的模型,我们首次获得了在200 fs脉冲的泵浦探针实验中非线性极化旋转的数值结果。这些结果与报道的实验测量结果非常吻合。

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