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在孤子晶体极限下利用椭圆余弦波实现微谐振器中宽带频率梳的确定性访问。

Deterministic access of broadband frequency combs in microresonators using cnoidal waves in the soliton crystal limit.

作者信息

Qi Zhen, Leshem Amir, Jaramillo-Villegas Jose A, D'Aguanno Giuseppe, Carruthers Thomas F, Gat Omri, Weiner Andrew M, Menyuk Curtis R

出版信息

Opt Express. 2020 Nov 23;28(24):36304-36315. doi: 10.1364/OE.405655.

Abstract

We present a method to deterministically obtain broad bandwidth frequency combs in microresonators. These broadband frequency combs correspond to cnoidal waves in the limit when they can be considered soliton crystals or single solitons. The method relies on moving adiabatically through the (frequency detuning)×(pump amplitude) parameter space, while avoiding the chaotic regime. We consider in detail SiN microresonators with small or intermediate dimensions and an SiO microresonator with large dimensions, corresponding to prior experimental work. We also discuss the impact of thermal effects on the stable regions for the cnoidal waves. Their principal effect is to increase the detuning for all the stable regions, but they also skew the stable regions, since higher pump power corresponds to higher power and hence increased temperature and detuning. The change in the detuning is smaller for single solitons than it is for soliton crystals. Without temperature effects, the stable regions for single solitons and soliton crystals almost completely overlap. When thermal effects are included, the stable region for single solitons separates from the stable regions for the soliton crystals, explaining in part the effectiveness of backwards-detuning to obtaining single solitons.

摘要

我们提出了一种在微谐振器中确定性地获得宽带频率梳的方法。当这些宽带频率梳可被视为孤子晶体或单个孤子时,在极限情况下它们对应于椭圆余弦波。该方法依赖于在(频率失谐)×(泵浦幅度)参数空间中绝热移动,同时避开混沌区域。我们详细考虑了与先前实验工作相对应的小尺寸或中等尺寸的氮化硅微谐振器以及大尺寸的二氧化硅微谐振器。我们还讨论了热效应对椭圆余弦波稳定区域的影响。其主要影响是增加所有稳定区域的失谐,但它们也会使稳定区域发生偏移,因为更高的泵浦功率对应更高的功率,从而导致温度升高和失谐增加。单个孤子的失谐变化比孤子晶体的失谐变化小。在没有温度效应的情况下,单个孤子和孤子晶体的稳定区域几乎完全重叠。当考虑热效应时,单个孤子的稳定区域与孤子晶体的稳定区域分离,这部分解释了反向失谐对于获得单个孤子的有效性。

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