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Chaos Synchronization and Communication in Mutually Coupled Semiconductor Lasers Driven by a Third Laser

机译:第三激光器驱动的互耦合半导体激光器的混沌同步与通信

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We numerically investigate the chaos synchronization and message transmission between two mutual coupling semiconductor lasers (MCSLs) subject to identical unidirectional injections (UIs) from an external cavity semiconductor laser (ECSL). The synchronization between the MCSLs is realized through injection locking in conjunction with symmetric operation. The simulation results show that stable isochronal synchronization between the MCSLs can be achieved under proper driving injections. This type of synchronization is robust to parameter mismatch up to tens of percentage and frequency detuning of several tens of gigahertz, which is much better than those of the MCSLs systems with self-feedback. Moreover, the investigations on the mutual chaos pass filtering effects and the message transmission indicate that the isochronal synchronization allows mutual message exchange with a bit rate higher than 10 Gb/s, when the chaos modulation technology is adopted. In addition, the MCSLs can synchronize with the ECSL for proper UI and MC, which provides an opportunity for array chaos synchronization and chaos communication networks. Finally, leader/laggard synchronization can also be achieved in the proposed system.
机译:我们用数值方法研究了两个互耦合半导体激光器(MCSL)之间的混沌同步和消息传输,它们受到来自外腔半导体激光器(ECSL)的相同单向注入(UI)的影响。 MCSL之间的同步是通过注入锁定结合对称操作实现的。仿真结果表明,在适当的驾驶喷射下,MCSL之间可以实现稳定的等时同步。这种类型的同步对于参数不匹配高达数十个百分数以及数十吉赫的频率失谐具有很强的鲁棒性,这比具有自反馈功能的MCSLs系统要好得多。此外,对相互混沌通过滤波效果和消息传输的研究表明,当采用混沌调制技术时,等时同步允许以高于10 Gb / s的比特率进行相互消息交换。此外,MCSL可以与ECSL同步以实现正确的UI和MC,这为阵列混乱同步和混乱通信网络提供了机会。最后,在提出的系统中也可以实现前导/滞后同步。

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