论文标题
超快纤维激光器中耗散孤子的光谱搏动:周期倍增及以后
Spectral pulsations of dissipative solitons in ultrafast fiber lasers: period doubling and beyond
论文作者
论文摘要
周期加倍是非线性科学所有学科中核心重要性的普遍分叉,这通常标志着系统参数附近混乱动力学的存在。尽管在不同的超快激光构型中观察到,但其物理起源仍未达成共识。这些观察结果还包括短期或长时间的其他类型的脉动耗散孤子。实时光谱表征允许研究光谱振荡,其特征揭示了导致不稳定性的腔内动力学。经过上下文审查,本文介绍了在耗散孤子的光谱域中表现出的各种时期的动力学。这些动力学是通过具有异常或正常分散的超快纤维激光器获得的。它揭示了瞬态动力学中的分叉和不稳定性的一系列时期,揭示了相互交织的分叉以及新的脉动频率的夹带。振荡频率倾向于锁定往返数量的积分,并与周期倍增,表明该周期的新组合将分叉与其他分叉化增加。这些实验发现通过数值模拟证实,强调了该周期的普遍性,分叉及其在超快激光系统中的可能性高度复杂。
Period doubling is a universal bifurcation of central importance in all disciplines of nonlinear science, which generally signals the existence of chaotic dynamics in the vicinity of the system parameters. Although observed in diverse ultrafast laser configurations, there is still no consensus on its physical origin. The observations also include other types of pulsating dissipative solitons, with either short or long periods. Real time spectral characterization allows to investigate optical spectral oscillations, whose features reveal the intracavity dynamics leading to instabilities. Following a contextual review, this article presents a variety of period doubling dynamics manifesting in the spectral domain of dissipative solitons. These dynamics are obtained with ultrafast fiber lasers featuring either anomalous or normal dispersion. It reveals a sequence of period doubling bifurcations and instabilities within transient dynamics, unveiling intertwined bifurcations and the entrainment of new pulsating frequencies. The oscillating frequencies tend to lock to the integral of roundtrip numbers as well as coexist with period doubling, demonstrating new combinations of the period doubling bifurcation with other bifurcations. These experimental findings are confirmed by numerical simulations, emphasizing both the universality of the period doubling bifurcations and their potentially highly complicated manifestations within ultrafast laser systems.