论文标题

基于多功能孤子微型群的可重新配置射频过滤器

Reconfigurable radiofrequency filters based on versatile soliton microcombs

论文作者

Hu, Jianqi, He, Jijun, Liu, Junqiu, Raja, Arslan S., Karpov, Maxim, Lukashchuk, Anton, Kippenberg, Tobias J., Brès, Camille-Sophie

论文摘要

快速成熟的Kerr Microcombs在微波光子学上显示出显着的潜力。然而,最先进的基于微型弹药的射频(RF)过滤器需要可编程的脉冲塑造器,这不可避免地增加了系统成本,足迹和复杂性。在这里,通过利用单孤子的光滑光谱包络,我们首次演示了基于微重的RF过滤器,使其摆脱任何其他脉冲成型。更重要的是,我们通过利用本质上丰富的孤子配置来实现RF过滤器的全光重构。具体来说,我们利用完美的孤子晶体将梳子间距倍增,从而划分过滤器通带频率。同样,一种完全新颖的方法,基于一个往返的两个孤子的多功能干扰模式,可以根据其相对方位角启用RF Pass带频率的广泛重构。所提出的方案既不要求干涉量学设置,也不要求其他脉冲塑形器进行过滤器重新配置,这为芯片尺度,可重新配置的基于微型泡沫的RF过滤器提供了实用的途径。

The rapidly maturing integrated Kerr microcombs show significant potential for microwave photonics. Yet, state-of-the-art microcomb based radiofrequency (RF) filters have required programmable pulse shapers, which inevitably increase the system cost, footprint, and complexity. Here, by leveraging the smooth spectral envelope of single solitons, we demonstrate for the first time microcomb based RF filters free from any additional pulse shaping. More importantly, we achieve all-optical reconfiguration of the RF filters by exploiting the intrinsically rich soliton configurations. Specifically, we harness the perfect soliton crystals to multiply the comb spacing thereby dividing the filter passband frequencies. Also, a completely novel approach based on the versatile interference patterns of two solitons within one round-trip, enables wide reconfigurability of RF passband frequencies according to their relative azimuthal angles. The proposed schemes demand neither an interferometric setup nor another pulse shaper for filter reconfiguration, providing a practical route towards chip-scale, widely reconfigurable microcomb based RF filters.

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