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Splitting in the pinning-depinning transition of fronts in long-delayed bistable systems

机译:在长延迟的双稳态系统中剖面的剖面式过渡。

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We investigate the formation of localized domains through front pinning in a periodically forced, bistable semiconductor laser with long-delayed optoelectronic feedback. At difference with 1D spatially extended systems, the transition from the pinning to the propagation regime occurs via two separated bifurcations, each corresponding to the unpinning of one of the fronts surrounding the localized domain. The bifurcation splitting is systematically explored, unveiling the crucial role played by the forcing frequency. The experimental results are reproduced and interpreted by means of a prototypical model of our system.
机译:我们通过在周期性强制,双稳态半导体激光器中通过前钉扎形成局部域的形成,具有长延迟光电反馈。 在与1D空间扩展系统的差异,从钉扎到传播制度的转变通过两个分离的分叉发生,每个分离的分叉相对应对围绕局部化域周围的一个前面的未销量。 系统地探索分叉分裂,揭示迫使频率发挥的至关重要作用。 通过我们系统的原型模型再现和解释实验结果。

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