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首页> 外文期刊>Nature Communications >Phase steps and resonator detuning measurements in microresonator frequency combs
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Phase steps and resonator detuning measurements in microresonator frequency combs

机译:微谐振器频率梳中的相位步长和谐振器失谐测量

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摘要

Experiments and theoretical modelling yielded significant progress toward understanding of Kerr-effect induced optical frequency comb generation in microresonators. However, the simultaneous Kerr-mediated interaction of hundreds or thousands of optical comb frequencies with the same number of resonator modes leads to complicated nonlinear dynamics that are far from fully understood. An important prerequisite for modelling the comb formation process is the knowledge of phase and amplitude of the comb modes as well as the detuning from their respective microresonator modes. Here, we present comprehensive measurements that fully characterize optical microcomb states. We introduce a way of measuring resonator dispersion and detuning of comb modes in a hot resonator while generating an optical frequency comb. The presented phase measurements show unpredicted comb states with discrete π and π /2 steps in the comb phases that are not observed in conventional optical frequency combs.
机译:实验和理论模型在理解微谐振器中克尔效应引起的光学频率梳产生方面取得了重大进展。然而,数百个或数千个光梳频率与相同数量的谐振器模式同时进行的Kerr介导的相互作用会导致复杂的非线性动力学,这是人们尚未完全了解的。建模梳状形成过程的重要先决条件是了解梳状模式的相位和幅度以及与它们各自的微谐振器模式失谐。在这里,我们介绍了全面表征光学微梳状态的综合测量。我们介绍了一种在产生光频率梳的同时测量谐振器色散和热谐振器中梳齿模式失谐的方法。呈现的相位测量结果显示出在梳状相位中具有离散的π和π/ 2阶跃的不可预测的梳状,这在常规光学频率梳中没有观察到。

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