论文标题
微孔子中反向传播的光的自我切换振荡
Self-switching Kerr oscillations of counter-propagating light in microresonators
论文作者
论文摘要
我们报告了Kerr环微孔子中反向传播光束之间振荡反相切换的实验性观察,包括从混乱状态出现周期性行为。自切换发生在平衡的操作方案中,并通过仅具有自我和跨相的KERR非线性的简单耦合动力系统很好地捕获。切换现象是由于对称性破裂状态的时间不稳定性以及吸引子合并平均恢复损坏的对称性。反向传播光的自切换对于实现可控制的,全光的波形,信号编码和混乱的加密术是可靠的。
We report the experimental observation of oscillatory antiphase switching between counter-propagating light beams in Kerr ring microresonators, including the emergence of periodic behaviour from a chaotic regime. Self-switching occurs in balanced regimes of operation and is well captured by a simple coupled dynamical system featuring only the self- and cross-phase Kerr nonlinearities. Switching phenomena are due to temporal instabilities of symmetry-broken states combined with attractor merging that restores the broken symmetry on average. Self-switching of counter-propagating light is robust for realising controllable, all-optical generation of waveforms, signal encoding and chaotic cryptography.