论文标题
增益辅助手性孤子微瘤
Gain-assisted chiral soliton microcombs
论文作者
论文摘要
新兴的微孔子频率梳子彻底改变了从光学通信到天文校准的广泛应用。尽管具有显着的优点,低能源效率和缺乏全光动力学控制,但仍严重阻碍了微梳系统向现实世界应用的转移。在这里,通过将活动激光培养基引入Soliton Microcomb,这是我们在包装的微孔子中的敏捷开关开关和可调双弯曲生成的实验性实验中实现的手性孤子。发现这种微孔子可以实现孤子弹弓效应,这是由模式间耦合引起的额外能量积累产生的快速孤子形成。此外,调整Erbium增益可以产生多功能多索顿状态,并将孤子操作窗口扩展到超过18 GHz失误的显着范围。最后,展示了反向孤子的增益辅助手学,这使孤子微角色的前所未有。具有主动可控性的非平凡性手性孤子形成激发了微型光学频率梳子的新范式,并带来了快速可调的孤子工具。
The emerging microresonator-based frequency combs revolutionize a broad range of applications from optical communications to astronomical calibration. Despite of their significant merits, low energy efficiency and the lack of all-optical dynamical control severely hinder the transfer of microcomb system to real-world applications. Here, by introducing active lasing medium into the soliton microcomb, for the first time, we experimentally achieve the chiral soliton with agile on-off switch and tunable dual-comb generation in a packaged microresonator. It is found that such a microresonator enables a soliton slingshot effect, the rapid soliton formation arising from the extra energy accumulation induced by inter-modal couplings. Moreover, tuning the erbium gain can generate versatile multi-soliton states, and extend the soliton operation window to a remarkable range over 18 GHz detuning. Finally, the gain-assisted chirality of counterpropagating soliton is demonstrated, which enables an unprecedented fast on-off switching of soliton microcombs. The non-trivial chiral soliton formation with active controllability inspires new paradigms of miniature optical frequency combs and brings the fast tunable soliton tools within reach.