论文标题
人工智能启用光谱可重新配置的光纤激光器
Artificial Intelligence Enabled Spectral Reconfigurable Fiber Laser
论文作者
论文摘要
人工智能和激光器的组合提供了具有开创性功能的智能光源的有力方法。在这里,基于多模纤维(MMF)中光的光谱空间操纵,开发了具有可重构和可编程光谱的拉曼纤维激光器(RFL)。提出的纤维激光器使用级联的刺激拉曼散射,瑞利散射的随机分布反馈以及基于MMF的智能光谱滤波器的点反馈。通过由遗传算法控制的波前塑形,可以将选择性波长的光集中在MMF中,从而形成滤波器,与激光的活性部分一起以高度的自由度积极地塑造输出光谱。我们实现了级联的RFL的任意光谱形状(例如,通过一阶到3级Stokes的智能过滤器的智能过滤器的泵电源和自动效率来调节,具有可自定义的线路,模式分离和功率分布的可自定义宽度,模式分离和功率分布的多波长激光器的任意光谱形状。我们的研究使用具有多元素码和非线性增益的纤维平台中的人工智能控制的光操纵,将空间控制映射到光谱域,并将MMF中光线的线性控制扩展到主动光发射,这对于在光学通信,感应,感应,感应,传感和光谱中的应用具有重要意义。
The combinations of artificial intelligence and lasers provide powerful ways to form smart light sources with ground-breaking functions. Here, a Raman fiber laser (RFL) with reconfigurable and programmable spectra in an ultra-wide bandwidth is developed based on spectral-spatial manipulation of light in multimode fiber (MMF). The proposed fiber laser uses nonlinear gain from cascaded stimulated Raman scattering, random distributed feedback from Rayleigh scattering, and point feedback from an MMF-based smart spectral filter. Through wavefront shaping controlled by a genetic algorithm, light of selective wavelength(s) can be focused in the MMF, forming the filter that, together with the active part of the laser, actively shape the output spectrum with a high degree of freedom. We achieved arbitrary spectral shaping of the cascaded RFL (e.g., continuously tunable single-wavelength and multi-wavelength laser with customizable linewidth, mode separation, and power distribution) from the 1st- to the 3rd-order Stokes emission by adjusting the pump power and auto-optimization of the smart filter. Our research uses artificial-intelligence controlled light manipulation in a fiber platform with multi-eigenmodes and nonlinear gain, mapping the spatial control into the spectral domain as well as extending the linear control of light in MMF to active light emission, which is of great significance for applications in optical communication, sensing, and spectroscopy.