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Bandwidth enhancement and time-delay signature suppression of chaotic signal from an optical feedback semiconductor laser by using cross phase modulation in a highly nonlinear fiber loop mirror

机译:通过在高度非线性光纤环路镜中使用交叉相位调制,来增强光反馈半导体激光器中混沌信号的带宽增强和时延签名抑制

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摘要

Based on a nonlinear fiber loop mirror (NOLM) composed of a fiber coupler (FC) and a highly nonlinear fiber (HNLF), a scheme is proposed to simultaneously realize the bandwidth enhancement and the time-delay signature (TDS) suppression of a chaotic signal generated from an external cavity optical feedback semiconductor laser. The simulation results show that, after passing through the NOLM, the bandwidth of chaotic signal can be efficiently enhanced and the TDS can be well suppressed under suitable operation parameters. Furthermore, the influences of the power-splitting ratio of the FC, the averaged power of the chaotic signal entering into the FC and the length of the HNLF on the chaotic bandwidth and TDS are analyzed, and the optimized parameters are determined.
机译:基于由光纤耦合器(FC)和高度非线性光纤(HNLF)组成的非线性光纤环形镜(NOLM),提出了一种同时实现混沌的带宽增强和时延签名(TDS)抑制的方案从外腔光反馈半导体激光器产生的信号。仿真结果表明,在通过适当的操作参数后,通过NOLM后,可以有效地提高混沌信号的带宽,并可以很好地抑制TDS。此外,分析了光纤通道的功率分配比,进入光纤通道的混沌信号的平均功率和HNLF的长度对混沌带宽和TDS的影响,并确定了优化参数。

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