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Intelligent control of mode-locked femtosecond pulses by time-stretch-assisted real-time spectral analysis

机译:智能控制模式锁定的飞秒脉冲通过时间拉伸辅助实时谱分析

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摘要

Mode-locked fiber lasers based on nonlinear polarization evolution can generate femtosecond pulses with different pulse widths and rich spectral distributions for versatile applications through polarization tuning. However, a precise and repeatable location of a specific pulsation regime is extremely challenging. Here, by using fast spectral analysis based on a time-stretched dispersion Fourier transform as the spectral discrimination criterion, along with an intelligent polarization search algorithm, for the first time, we achieved real-time control of the spectral width and shape of mode-locked femtosecond pulses; the spectral width can be tuned from 10 to 40 nm with a resolution of similar to 1.47 nm, and the spectral shape can be programmed to be hyperbolic secant or triangular. Furthermore, we reveal the complex, repeatable transition dynamics of the spectrum broadening of femtosecond pulses, including five middle phases, which provides deep insight into ultrashort pulse formation that cannot be observed with traditional mode-locked lasers.
机译:基于非线性偏振进化的模式锁定光纤激光器可以通过极化调谐产生具有不同脉冲宽度和丰富的频谱分布的飞秒脉冲。然而,特定脉动制度的精确和可重复的位置非常具有挑战性。这里,通过使用基于时间拉伸色散傅里叶变换的快速谱分析作为光谱辨别标准,以及第一次智能偏振搜索算法,我们实现了对模式的频谱宽度和形状的实时控制 - 锁定的飞秒脉冲;频谱宽度可以从10到40nm调谐,分辨率类似于1.47nm,并且可以被编程为双曲线割线或三角形。此外,我们揭示了飞秒脉冲的光谱扩展的复杂,可重复的转换动态,包括五个中间阶段,这提供了通过传统模式锁定激光器无法观察到的超短脉冲形成的深层洞察。

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