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Cavity optomechanical coupling to multiple resonances assisted by kerr comb generation in toroid microcavity

机译:腔光机械耦合到克尔梳子在环形微腔中辅助的多个共振

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Summary form only given. A high quality factor (Q) microcavity is an efficient device for generating a Kerr comb via a four-wave mixing process inside the cavity [1]. Kerr comb platforms are candidates for such applications as optical frequency combs, optical communications, arbitrary waveform generation, and microwave oscillators. Although a silica toroid microcavity (Fig. 1(a)) also has good characteristics for Kerr comb generation (high Q and small mode volume), the problem is that the cavity is prone to optomechanical oscillation, which causes amplitude and phase noises [2, 3]. Here, we study cavity optomechanical couplings between generated Kerr comb lines and multiple resonances with a view to generating a comb with low noise from a toroid microcavity. And we observed a Turing pattern comb [4] whose mechanical oscillation was suppressed with blue detuned pumping and red detuned comb lines that was induced by optomechanical couplings.
机译:摘要表格仅给出。高质量因子(Q)微腔是一种有效的装置,用于通过腔内的四波混合过程产生kerr梳理[1]。 Kerr梳平台是用于荧光频率梳,光通信,任意波形发电和微波振荡器的应用的候选者。虽然硅环形微腔(图1(a))也具有良好的特征,用于kerr梳状(高q和小模式体积),问题是腔容易发生光学力学振荡,这导致幅度和相位噪声[2 ,3]。这里,我们研究生成的Kerr梳子线和多个谐振之间的腔体机械联轴器,以便从圆圈微腔生成具有低噪声的梳状物。并且我们观察了一种图案梳形[4],其机械振荡被通过光机械联轴器诱导的蓝色失谐泵和红色棘状梳状线抑制。

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