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基于芯片的微谐振器频率梳产生中的二次谐波辅助四波混频

Second-harmonic-assisted four-wave mixing in chip-based microresonator frequency comb generation.

作者信息

Xue Xiaoxiao, Leo François, Xuan Yi, Jaramillo-Villegas Jose A, Wang Pei-Hsun, Leaird Daniel E, Erkintalo Miro, Qi Minghao, Weiner Andrew M

机构信息

Department of Electronic Engineering, Tsinghua University, Beijing 100084, China.

School of Electrical and Computer Engineering, Purdue University, 465 Northwestern Avenue, West Lafayette, IN 47907-2035, USA.

出版信息

Light Sci Appl. 2017 Apr 21;6(4):e16253. doi: 10.1038/lsa.2016.253. eCollection 2017 Apr.

Abstract

Simultaneous Kerr comb formation and second-harmonic generation with on-chip microresonators can greatly facilitate comb self-referencing for optical clocks and frequency metrology. Moreover, the presence of both second- and third-order nonlinearities results in complex cavity dynamics that is of high scientific interest but is still far from being well-understood. Here, we demonstrate that the interaction between the fundamental and the second-harmonic waves can provide an entirely new way of phase matching for four-wave mixing in optical microresonators, enabling the generation of optical frequency combs in the normal dispersion regime under conditions where comb creation is ordinarily prohibited. We derive new coupled time-domain mean-field equations and obtain simulation results showing good qualitative agreement with our experimental observations. Our findings provide a novel way of overcoming the dispersion limit for simultaneous Kerr comb formation and second-harmonic generation, which might prove to be especially important in the near-visible to visible range where several atomic transitions commonly used for the stabilization of optical clocks are located and where the large normal material dispersion is likely to dominate.

摘要

利用片上微谐振器同时实现克尔频率梳生成和二次谐波产生,能够极大地促进用于光钟和频率计量的频率梳自参考。此外,二阶和三阶非线性的同时存在导致了复杂的腔动力学,这具有很高的科学研究价值,但目前仍远未被充分理解。在此,我们证明了基波与二次谐波之间的相互作用可为光学微谐振器中的四波混频提供一种全新的相位匹配方式,从而能够在通常禁止产生频率梳的条件下,在正常色散区域生成光学频率梳。我们推导了新的耦合时域平均场方程,并获得了与实验观测结果在定性上吻合良好的模拟结果。我们的研究结果提供了一种克服同时实现克尔频率梳生成和二次谐波产生时色散限制的新方法,这在近可见光到可见光范围内可能尤为重要,因为常用于稳定光钟的几个原子跃迁就位于该范围内,且该范围内正常材料色散可能占主导地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87c5/6062166/35115888dc12/lsa2016253f1.jpg

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