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Experimental mapping of non-linear dynamics in synchronized coupled semiconductor laser networks

机译:同步耦合半导体激光网络中非线性动力学的实验映射

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The potential of conventional semiconductor lasers to generate complex and chaotic dynamics at a bandwidth that extends up to tens of GHz turns them into useful components in applications oriented to sensing and security. Specifically, latest theoretical and experimental works have demonstrated the capability of mutually coupled semiconductor lasers to exhibit a joint behaviour under various conditions. In an uncoupled network consisting of N similar SLs - representing autonomous nodes in the network - each node emits an optical signal of various dynamics depending on its biasing conditions and internal properties. These nodes remain unsynchronized unless appropriate coupling and biasing conditions apply. A synchronized behaviour can be in principle observed in sub-groups of lasers or in the overall laser network. In the present work, experimental topologies that employ eight SLs, under diverse biasing and coupling conditions, are built and investigated. The deployed systems incorporate off-the-shelf fiber-optic communications components operating at the 1550nm spectral window. The role of emission wavelength detuning of each participating node in the network - at GHz level - is evaluated.
机译:常规半导体激光器在高达数十GHz的带宽上产生复杂和混沌动力学的潜力使它们成为面向传感和安全性的应用中的有用组件。具体而言,最新的理论和实验工作证明了相互耦合的半导体激光器在各种条件下表现出联合行为的能力。在由N个相似的SL组成的非耦合网络(代表网络中的自治节点)中,每个节点都会根据其偏置条件和内部属性发出各种动态的光信号。除非应用适当的耦合和偏置条件,否则这些节点将保持不同步。原则上可以在激光器的子组或整个激光器网络中观察到同步的行为。在当前的工作中,建立并研究了在不同的偏置和耦合条件下采用八个SL的实验拓扑。部署的系统集成了在1550nm光谱窗口下运行的现成的光纤通信组件。评估了网络中每个参与节点的发射波长失谐的作用-在GHz级别。

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