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Chaos dynamics in semiconductor lasers with polarization-rotated optical feedback

机译:具有偏振旋转光反馈的半导体激光器的混沌动力学

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摘要

By using polarization-rotated optical feedback from the transverse-electric (TE) mode to the transverse-magnetic (TM) mode, chaotic oscillations for both polarization modes are excited in a semiconductor laser. We find different correlations between these chaotic oscillations than those found in previous studies. In this study, the dynamics are strongly dependent on their radio-frequency (RF) components and they are divided into three RF regions. For low-pass filtered signals lower than the laser relaxation oscillation, there is an antiphase correlation between the two polarization modes. On the other hand, the two polarization modes have an in-phase correlation for the RF components of the high-pass filtered signals, which are higher than the relaxation oscillation. However, no correlations were observed between the two modes for the intermediate RF components that include the relaxation oscillation frequency. We also perform numerical calculations for the model and obtain good agreement between the theoretical and experimental results.
机译:通过使用从横向电(TE)模式到横向磁(TM)模式的偏振旋转光反馈,可以在半导体激光器中激发两种偏振模式的混沌振荡。我们发现这些混沌振荡之间的相关性与以前的研究不同。在这项研究中,动力学很大程度上取决于其射频(RF)分量,并且将其分为三个RF区域。对于低于激光弛豫振荡的低通滤波信号,两个偏振模式之间存在反相相关性。另一方面,两个极化模式对于高通滤波信号的RF分量具有同相相关性,该相关性高于张弛振荡。但是,在包括松弛振荡频率在内的中间RF分量的两种模式之间未观察到相关性。我们还对该模型进行了数值计算,并在理论和实验结果之间取得了良好的一致性。

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