Stability and mutual coherence of Raman combs in high-Q silica microresonators

IF 1.1 Q4 OPTICS Optics continuum Pub Date : 2023-06-23 DOI:10.1364/optcon.493749
Shuto Sugawara, S. Fujii, S. Kawanishi, T. Tanabe
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Abstract

We investigated the stability and mutual coherence of a Raman microcomb in a silica microrod resonator by monitoring the output power and longitudinal mode spacings. The results indicate that we can obtain a stable Raman comb formation without the need for four-wave mixing processes. The use of a Raman comb will open the possibility of simplifying the setup because it will relax the phase matching condition usually required for microresonator frequency comb generation. Although there are some restrictions in regard to using a Raman comb for applications due to the coexistence of the comb components in different mode families, a proof-of-concept demonstration shows that it is sufficiently stable and robust for applications such as optical communications.
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高Q二氧化硅微谐振器中拉曼梳的稳定性和相互相干
我们通过监测输出功率和纵模间距,研究了二氧化硅微棒谐振器中拉曼微棒的稳定性和相互相干。结果表明,我们可以在不需要四波混频过程的情况下获得稳定的拉曼梳状结构。拉曼梳的使用将打开简化设置的可能性,因为它将放宽微谐振器频率梳生成通常所需的相位匹配条件。尽管由于不同模式族中梳状组件的共存,在将拉曼梳用于应用方面存在一些限制,但概念验证证明表明,它对于光通信等应用来说足够稳定和稳健。
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