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Dynamical properties induced by state-dependent delays in photonic systems

机译:光子系统中与状态有关的延迟引起的动力学性质

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In many dynamical systems and complex networks time delays appear naturally in feedback loops or coupling connections of individual elements. Moreover, in a whole class of systems, these delay times can depend on the state of the system. Nevertheless, so far the understanding of the impact of such state-dependent delays remains poor with a particular lack of systematic experimental studies. Here we fill this gap by introducing a conceptually simple photonic system that exhibits dynamics of self-organised switching between two loops with two different delay times, depending on the state of the system. On the basis of experiments and modelling on semiconductor lasers with frequency-selective feedback mirrors, we characterize the switching between the states defined by the individual delays. Our approach opens new perspectives for the study of this class of dynamical systems and enables applications in which the self-organized switching can be exploited.
机译:在许多动态系统和复杂的网络中,时间延迟自然会出现在单个元件的反馈回路或耦合连接中。而且,在整个系统类别中,这些延迟时间可能取决于系统状态。尽管如此,到目前为止,由于缺乏系统的实验研究,对这种依赖状态的延迟的影响的理解仍然很差。在这里,我们通过引入概念上简单的光子系统来填补这一空白,该光子系统根据系统的状态显示具有两个不同延迟时间的两个环路之间的自组织切换动力学。在对带有频率选择反馈镜的半导体激光器进行实验和建模的基础上,我们描述了由各个延迟定义的状态之间的切换。我们的方法为此类动力学系统的研究开辟了新的视角,并使能够利用自组织开关的应用成为可能。

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