首页> 外文期刊>Journal of optics, B. Quantum and semiclassical optics: Journal of the European Optical Society >Chaos synchronization in a mutually coupled laser array subjected to self-mixing modulation
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Chaos synchronization in a mutually coupled laser array subjected to self-mixing modulation

机译:自混合调制的互耦合激光器阵列中的混沌同步

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This tutorial presents a detailed description of experiments, simulations, and characterizations of chaos synchronization phenomena in the model of a mutually coupled microchip solid-state laser array subjected to self-mixing feedback modulation. We demonstrate a transition to synchronized chaos by the method of 'phase squeezing' with increasing field overlap between the two lasers. This phenomenon is well reproduced by numerical simulation of model equations. It is also shown that low energy variation as well as high disorder are concurrently established in synchronized chaos in the present system. The deterministic random switching (i.e., chaotic itinerancy) among phase-squeezed states and synchronized chaos states is numerically demonstrated in a transition region from a phase-squeezed state to a synchronized state. We characterize observed behaviours using such methods as singular value deposition (SVD), joint time–frequency analysis (JTFA) introducing a similarity function, and coarse-grained information transfer rate (CITR) analysis of long-term experimental or numerical time series, and discuss the physical significance of observed nonlinear dynamics in conjunction with chaos synchronization in mutually coupled lasers.
机译:本教程详细介绍了在经过自混合反馈调制的互耦合微芯片固态激光器阵列模型中的混沌同步现象的实验,仿真和表征。我们证明了通过“相位压缩”方法向同步混沌的过渡,随着两个激光器之间场重叠的增加。通过模型方程的数值模拟可以很好地再现这种现象。还显示出在本系统中的同步混沌中同时建立了低能量变化和高无序性。在从相位压缩状态到同步状态的过渡区域中,在数值上证明了相位压缩状态和同步混沌状态之间的确定性随机切换(即,混沌迭代)。我们使用奇异值沉积(SVD),引入相似函数的联合时频分析(JTFA)和长期实验或数值时间序列的粗粒度信息传输率(CITR)分析等方法来表征观察到的行为,并且讨论了在相互耦合的激光器中结合混沌同步观察到的非线性动力学的物理意义。

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