论文标题

单微孔子中的微核的光谱扩展和同步

Spectral Extension and Synchronisation of Microcombs in a Single Microresonator

论文作者

Zhang, Shuangyou, Silver, Jonathan, DelHaye, Pascal

论文摘要

我们证明,可以通过使用双重泵来一致扩展在微孔子中产生的孤子微弹的光谱:一个在微孔子异常分散体中具有频率的一个泵,用于微孔子的异常分散状态,用于通过正常分散型辅助效果来产生明亮的孤子微振体,同时又有一个泵,并补偿均匀的量子,并弥补了微米的辅助模式。明亮的孤子,从而延伸了微磅的光谱。不同微孔子的实验结果表明,即使在不同模式族中产生梳子,两个梳子的模式间距也是同步的。数值模拟与实验结果非常吻合,并表明第二个泵的明亮光脉冲在正常分散体中被动形成,并被明亮的孤子捕获。我们认为,所展示的技术提供了一种生成宽带微型群和多色频率梳的替代方法,该方法可用于频率计量和光谱法。此外,此方法可以选择性增强梳状频谱特定部位的可用光功率。

We demonstrate that the optical spectrum of a soliton microcomb generated in a microresonator can be coherently extended by using bichromatic pumping: one pump with a frequency in the anomalous dispersion regime of the microresonator is used to generate a bright soliton microcomb while a second pump in the normal dispersion regime both compensates the thermal effect of the microresonator and generates a second frequency comb via cross-phase modulation with the bright soliton, thus extending the spectrum of the microcomb. Experimental results for different microresonators show that the mode spacings of the two combs are synchronised, even when the combs are generated in different mode families. Numerical simulations agree well with experimental results and reveal that a bright optical pulse from the second pump is passively formed in the normal dispersion regime and trapped by the bright soliton. We believe the demonstrated technique provides an alternative way to generate broadband microcombs and multi-coloured frequency combs that can be useful for frequency metrology and spectroscopy. In addition, this method enables the selective enhancement of available optical power in specific parts of the comb spectrum.

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