Department of Applied Physics and Applied Mathematics, Columbia University, New York, New York 10027, USA.
School of Electrical and Computer Engineering, Cornell University, Ithaca, New York 14853, USA.
Nat Commun. 2017 Feb 24;8:14569. doi: 10.1038/ncomms14569.
The generation of temporal cavity solitons in microresonators results in coherent low-noise optical frequency combs that are critical for applications in spectroscopy, astronomy, navigation or telecommunications. Breather solitons also form an important part of many different classes of nonlinear wave systems, manifesting themselves as a localized temporal structure that exhibits oscillatory behaviour. To date, the dynamics of breather solitons in microresonators remains largely unexplored, and its experimental characterization is challenging. Here we demonstrate the excitation of breather solitons in two different microresonator platforms based on silicon nitride and on silicon. We investigate the dependence of the breathing frequency on pump detuning and observe the transition from period-1 to period-2 oscillation. Our study constitutes a significant contribution to understanding the soliton dynamics within the larger context of nonlinear science.
微谐振器中时域孤子的产生导致相干低噪声光频梳的形成,这对于光谱学、天文学、导航或电信应用至关重要。呼吸子孤子也是许多不同类型的非线性波系统的重要组成部分,表现为一种表现出振荡行为的局域时域结构。迄今为止,微谐振器中呼吸子孤子的动力学仍然在很大程度上未被探索,并且其实验特性描述具有挑战性。在这里,我们在基于氮化硅和硅的两种不同微谐振器平台上演示了呼吸子孤子的激发。我们研究了呼吸频率对泵浦失谐的依赖关系,并观察到从周期-1 到周期-2 振荡的转变。我们的研究对理解非线性科学更广泛背景下的孤子动力学做出了重要贡献。