Opt Lett. 2018 Aug 1;43(15):3674-3677. doi: 10.1364/OL.43.003674.
It was recently predicted that, due to stimulated Raman scattering, temporal Kerr cavity solitons may exhibit oscillatory instabilities at large cavity detunings [Phys. Rev. Lett.120, 053902 (2018)PRLTAO0031-900710.1103/PhysRevLett.120.053902]. Here, we report experimental observations of this behavior. To access the appropriate oscillatory regime, we construct a macroscopic fiber ring resonator with a high finesse of F≈240. By synchronously driving the resonator with flat-top nanosecond pulses, we can reach very large intracavity power levels, where Raman-induced soliton oscillations can be observed. We also surprisingly find that, in the limit of large cavity driving strengths, new soliton instability regimes that are not accounted for in the known bifurcation structure of driven Kerr resonators can emerge even in the absence of Raman effects. Our experimental results are in good agreement with numerical simulations.
最近有人预测,由于受激拉曼散射的影响,在大腔失谐时,时间克尔腔孤子可能会表现出振荡不稳定性[Phys. Rev. Lett.120, 053902 (2018)PRLTAO0031-900710.1103/PhysRevLett.120.053902]。在这里,我们报告了对此行为的实验观察。为了进入适当的振荡状态,我们构建了一个具有高精细度 F≈240 的宏观光纤环形谐振器。通过用平顶纳秒脉冲同步驱动谐振器,我们可以达到非常大的腔内功率水平,在那里可以观察到拉曼诱导的孤子振荡。我们还惊奇地发现,在大腔驱动强度的极限下,即使在没有拉曼效应的情况下,即使在已知的驱动克尔谐振器分叉结构中没有考虑到的情况下,也可能会出现新的孤子不稳定性模式。我们的实验结果与数值模拟吻合得很好。