Wang Pi-Yu, Wan Shuai, Ma Rui, Li Wei, Bo Fang, Guo Guang-Can, Dong Chun-Hua
Opt Lett. 2024 Apr 1;49(7):1729-1732. doi: 10.1364/OL.514893.
Soliton microcombs are regarded as an ideal platform for applications such as optical communications, optical sensing, low-noise microwave sources, optical atomic clocks, and frequency synthesizers. Many of these applications require a broad comb spectrum that covers an octave, essential for implementing the f - 2f self-referencing techniques. In this work, we have successfully generated an octave-spanning soliton microcomb based on a z-cut thin-film lithium niobate (TFLN) microresonator. This achievement is realized under on-chip optical pumping at 340 mW and through extensive research into the broadening of dual dispersive waves (DWs). Furthermore, the repetition rate of the octave soliton microcomb is accurately measured using an electro-optic comb generated by an x-cut TFLN racetrack microresonator. Our results represent a crucial step toward the realization of practical, integrated, and fully stabilized soliton microcomb systems based on TFLN.
孤子微梳被视为光通信、光学传感、低噪声微波源、光学原子钟和频率合成器等应用的理想平台。其中许多应用需要覆盖一个倍频程的宽梳状光谱,这对于实现f - 2f自参考技术至关重要。在这项工作中,我们基于z切割薄膜铌酸锂(TFLN)微谐振器成功产生了一个倍频程跨度的孤子微梳。这一成果是在340 mW的片上光泵浦下以及通过对双色散波(DWs)展宽的广泛研究实现的。此外,使用由x切割TFLN跑道微谐振器产生的电光梳精确测量了倍频程孤子微梳的重复率。我们的结果代表了朝着实现基于TFLN的实用、集成和完全稳定的孤子微梳系统迈出的关键一步。