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Semiconductor Laser-Based Multi-Channel Wideband Chaos Generation Using Optoelectronic Hybrid Feedback and Parallel Filtering

机译:基于半导体激光器的光电混合反馈和并行滤波多通道宽带混沌生成

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We propose and experimentally demonstrate a novel multi-channel chaos generation scheme, which can simultaneously produce multiple chaotic signals with wideband spectrum and suppressed time-delay signature (TDS). In this scheme, we introduce an external self-phase-modulated feedback (ESPMF) to improve the optical bandwidth of the initial chaos generated by a conventional external-cavity semiconductor laser (ECSL), then optical tunable filters (OTFs) are utilized to simultaneously extract three-channel chaotic outputs. The experimental results show that the proposed scheme has three main advantages. Firstly, it can simultaneously generate multiple chaotic outputs with different central wavelengths and low correlations. Secondly, the bandwidth of original ECSL-based chaos can be improved by several times, and the undesired TDS characteristics in the original chaos can be completely suppressed to an indistinguishable level (lower than 0.02). Thirdly, the bandwidths of these chaotic outputs are flexible and can be adjusted within a wide range of 20 GHz by controlling the filter bandwidths. In addition, we demonstrate an application of the proposed chaos generation scheme in random bit generation (RBG), and multi-channel high-speed random bit sequences with a total generation rate over Tb/s and NIST verified randomness are simultaneously obtained.
机译:我们提出并实验演示了一种新型的多通道混沌生成方案,该方案可以同时产生多个具有宽带频谱和抑制时滞特征(TDS)的混沌信号。在该方案中,我们引入外部自相位调制反馈(ESPMF)来提高传统外腔半导体激光器(ECSL)产生的初始混沌的光带宽,然后利用光学可调谐滤波器(OTF)同时提取三通道混沌输出。实验结果表明,所提方案具有3个主要优点。首先,它可以同时产生多个中心波长不同、相关性低的混沌输出。其次,可以将原有基于ECSL的混沌的带宽提高数倍,将原有混沌中不需要的TDS特性完全抑制到无法区分的水平(低于0.02)。第三,这些混沌输出的带宽是灵活的,可以通过控制滤波器带宽在20 GHz的宽范围内进行调整。此外,我们演示了所提出的混沌生成方案在随机比特生成(RBG)中的应用,并同时获得了总生成速率超过Tb/s的多通道高速随机比特序列和NIST验证的随机性。

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