Li Yujia, Wang Chao, Huang Dongmei, Chen Hongjie, Li Feng
Opt Lett. 2022 May 1;47(9):2170-2173. doi: 10.1364/OL.455599.
In this Letter, the mutual dynamics between synchronous solitons in a bidirectional mode-locked fiber laser are studied via dispersive Fourier transform methodology. We explore the spectral evolution and the statistical correlations between solitons with bidirectional propagation, indicating the low and high mutual linear dependences of the spectral energy jitters in stable and breathing mode-locking states, respectively. Moreover, to the best of our knowledge, the oscillating and sliding phase dynamics are experimentally revealed by the interference between bidirectional breathing solitons in ultrafast fiber lasers for the first time. Our findings enrich the understanding of the internal mutual dynamics between bidirectional solitons, which guides the extension of their potential applications, such as Sagnac-effect-based optical sensing.
在这封信中,通过色散傅里叶变换方法研究了双向锁模光纤激光器中同步孤子之间的相互动力学。我们探索了双向传播孤子的光谱演化以及它们之间的统计相关性,分别表明了在稳定锁模状态和呼吸锁模状态下光谱能量抖动的低和高相互线性依赖性。此外,据我们所知,超快光纤激光器中双向呼吸孤子之间的干涉首次通过实验揭示了振荡和滑动相位动力学。我们的发现丰富了对双向孤子之间内部相互动力学的理解,这有助于拓展它们的潜在应用,如基于萨格纳克效应的光学传感。