On-Chip Parametric Synchronization of a Dissipative Kerr Soliton Microcomb

Gregory Moille, Pradyoth Shandilya, Miro Erkintalo, Curtis R. Menyuk, Kartik Srinivasan
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Abstract

Synchronization of oscillators is ubiquitous in nature. Often, the synchronized oscillators couple directly, yet in some cases synchronization can arise from their parametric interactions. Here, we theoretically predict and experimentally demonstrate the parametric synchronization of a dissipative Kerr soliton frequency comb. We specifically show that the parametric interaction between the soliton and two auxiliary lasers permits the entrainment of the frequency comb repetition rate. Besides representing the first prediction and demonstration of parametric synchronization of soliton frequency combs, our scheme offers significant flexibility for all-optical metrological-scale stabilization of the comb.
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耗散克尔孤子微蜂窝的片上参数同步
振荡器同步在自然界中无处不在。通常情况下,同步振荡器直接耦合,但在某些情况下,同步可以从它们的参数相互作用中产生。在这里,我们从理论上预测并通过实验证明了耗散凯尔索利子频率梳的参数同步。我们特别展示了孤子和两个辅助激光器之间的参数相互作用允许频率梳重复率的内敛。除了首次预测和演示了孤子频率梳的参数同步之外,我们的方案还为梳子的全光学计量级稳定提供了极大的灵活性。
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