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Spectral dynamics of modulation instability described using Akhmediev breather theory

机译:使用Akhmediev呼吸理论描述调制不稳定性的光谱动力学

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The Akhmediev breather formalism of modulation instability is extended to describe the spectral dynamics of induced multiple sideband generation from a modulated continuous wave field. Exact theoretical results describing the frequency domain evolution are compared with experiments performed using single mode fiber around 1550 nm. The spectral theory is shown to reproduce the depletion dynamics of an injected modulated continuous wave pump and to describe the Fermi-Pasta-Ulam recurrence and recovery towards the initial state. Realistic simulations including higher-order dispersion, loss, and Raman scattering are used to identify that the primary physical factors that preclude perfect recurrence are related to imperfect initial conditions.
机译:扩展了调制不稳定性的Akhmediev通气形式,以描述由调制连续波场引起的多个边带生成的频谱动力学。将描述频域演变的精确理论结果与使用约1550 nm的单模光纤进行的实验进行比较。光谱理论显示出再现了注入的调制连续波泵的耗尽动力学,并描述了费米-帕斯塔-乌拉姆的复发和向初始状态的恢复。使用包括高阶色散,损耗和拉曼散射的逼真的模拟来确定妨碍完美重复的主要物理因素与不完善的初始条件有关。

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