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光学微腔中耗散克尔孤子的拉曼自频移

Raman Self-Frequency Shift of Dissipative Kerr Solitons in an Optical Microresonator.

作者信息

Karpov Maxim, Guo Hairun, Kordts Arne, Brasch Victor, Pfeiffer Martin H P, Zervas Michail, Geiselmann Michael, Kippenberg Tobias J

机构信息

École Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

出版信息

Phys Rev Lett. 2016 Mar 11;116(10):103902. doi: 10.1103/PhysRevLett.116.103902.

Abstract

The formation of temporal dissipative Kerr solitons in microresonators driven by a continuous-wave laser enables the generation of coherent, broadband, and spectrally smooth optical frequency combs as well as femtosecond pulse sources with compact form factors. Here we report the observation of a Raman-induced soliton self-frequency shift for a microresonator dissipative Kerr soliton also referred to as the frequency-locked Raman soliton. In amorphous silicon nitride microresonator-based single soliton states the Raman effect manifests itself by a spectrum that is sech^{2} in shape and whose center is spectrally redshifted from the continuous wave pump laser. The shift is theoretically described by the first-order shock term of the material's Raman response, and we infer a Raman shock time of ∼20  fs for amorphous silicon nitride. Moreover, we observe that the Raman-induced frequency shift can lead to a cancellation or overcompensation of the soliton recoil caused by the formation of a coherent dispersive wave. The observations are in agreement with numerical simulations based on the Lugiato-Lefever equation with a Raman shock term. Our results contribute to the understanding of Kerr frequency combs in the soliton regime, enable one to substantially improve the accuracy of modeling, and are relevant to the understanding of the fundamental timing jitter of microresonator solitons.

摘要

在连续波激光驱动的微谐振器中形成时间耗散克尔孤子,能够产生相干、宽带且光谱平滑的光学频率梳以及具有紧凑外形的飞秒脉冲源。在此,我们报告了对微谐振器耗散克尔孤子(也称为锁频拉曼孤子)的拉曼诱导孤子自频移的观测。在基于非晶硅氮化物微谐振器的单孤子态中,拉曼效应通过一个形状为sech² 且其中心在光谱上相对于连续波泵浦激光发生红移的光谱表现出来。该频移在理论上由材料拉曼响应的一阶激波项描述,并且我们推断非晶硅氮化物的拉曼激波时间约为20飞秒。此外,我们观察到拉曼诱导的频移可导致由相干色散波形成引起的孤子反冲的抵消或过度补偿。这些观测结果与基于带有拉曼激波项的Lugiato - Lefever方程的数值模拟结果一致。我们的结果有助于理解孤子 regime 中的克尔频率梳,使人们能够大幅提高建模精度,并且与理解微谐振器孤子的基本定时抖动相关。

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