论文标题
部分可观测时空混沌系统的无模型预测
Radiation build-up and dissipation in random fiber laser
论文作者
论文摘要
随机纤维激光器(RFL)是一个复杂的物理系统,它源于分布式扩增和纤维散射的内在随机性。在分析稳定状态下的底层光波动力学方面,人们普遍兴趣。但是,瞬态状态(例如RFL堆积和耗散)对于展开Lightwave交互过程也尤其重要。在这里,我们首次研究了瞬态状态下的RFL动力学,并在理论上和实验上跟踪RFL的时间和光谱进化。特别是,在随机分布的反馈的贡献下,RFL的堆积显示了没有与空腔相关特征的连续verhulst逻辑生长曲线,这与传统光纤激光器的阶梯式生长曲线有显着不同。此外,辐射堆积持续时间与泵功率成反比,RFL的光谱演变从光谱密度增加到光谱宽度。从稳态到泵开关状态,RFL输出功率立即消散,雷利散射的剩余stokes Lightwave将在一次往返后逐渐消失。这项工作为RFL的瞬态动力学功能提供了新的见解。
Random fiber laser (RFL) is a complex physical system that arises from the distributed amplification and the intrinsic stochasticity of the fiber scattering. There has been widespread interest in analyzing the underlying lightwave kinetics at steady state. However, the transient state, such as the RFL build-up and dissipation, is also particularly important for unfolding lightwave interaction process. Here, we investigate for the first time the RFL dynamics at transient state, and track the RFL temporal and spectral evolution theoretically and experimentally. Particularly, with the contribution of randomly distributed feedback, the build-up of RFL shows continuous Verhulst logistic growth curves without cavity-related features, which is significantly different from the step-like growth curve of conventional fiber lasers. Furthermore, the radiation build-up duration is inversely related to the pump power, and the spectral evolution of RFL undergoes two phases from spectral density increase to spectral broadening. From steady-state to pump switch-off state, the RFL output power dissipates immediately, and the remaining Stokes lightwave from the Rayleigh scattering will gradually disappear after one round-trip. This work provides new insights into the transient dynamics features of the RFL.