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General description and understanding of the nonlinear dynamics of mode-locked fiber lasers

机译:锁模光纤激光器的非线性动力学的一般描述和理解

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摘要

As a type of nonlinear system with complexity, mode-locked fiber lasers are known for their complex behaviour. It is a challenging task to understand the fundamental physics behind such complex behaviour, and a unified description for the nonlinear behaviour and the systematic and quantitative analysis of the underlying mechanisms of these lasers have not been developed. Here, we present a complexity science-based theoretical framework for understanding the behaviour of mode-locked fiber lasers by going beyond reductionism. This hierarchically structured framework provides a model with variable dimensionality, resulting in a simple view that can be used to systematically describe complex states. Moreover, research into the attractors' basins reveals the origin of stochasticity, hysteresis and multistability in these systems and presents a new method for quantitative analysis of these nonlinear phenomena. These findings pave the way for dynamics analysis and system designs of mode-locked fiber lasers. We expect that this paradigm will also enable potential applications in diverse research fields related to complex nonlinear phenomena.
机译:作为一种复杂的非线性系统,锁模光纤激光器具有复杂的性能。理解这种复杂行为背后的基本物理学是一项艰巨的任务,并且尚未开发出对这些非线性行为的统一描述以及对这些激光器的潜在机理的系统和定量分析。在这里,我们提出了一种基于复杂性科学的理论框架,以超越简化论来理解锁模光纤激光器的行为。这种分层结构的框架提供了具有可变维度的模型,从而产生了可用于系统地描述复杂状态的简单视图。此外,对吸引子盆地的研究揭示了这些系统中的随机性,滞后性和多重稳定性的起源,并提出了一种定量分析这些非线性现象的新方法。这些发现为锁模光纤激光器的动力学分析和系统设计铺平了道路。我们希望这种范例还将在与复杂非线性现象有关的各种研究领域中实现潜在的应用。

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