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近零色散孤子与反常色散中的宽带调制不稳定性克尔微梳

Near-zero-dispersion soliton and broadband modulational instability Kerr microcombs in anomalous dispersion.

作者信息

Xiao Zeyu, Li Tieying, Cai Minglu, Zhang Hongyi, Huang Yi, Li Chao, Yao Baicheng, Wu Kan, Chen Jianping

机构信息

State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Electronic Information and Electrical Engineering, Department of Electronic Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.

Key Laboratory of Optical Fibre Sensing and Communications (Education Ministry of China), University of Electronic Science and Technology of China, Chengdu, 611731, China.

出版信息

Light Sci Appl. 2023 Feb 1;12(1):33. doi: 10.1038/s41377-023-01076-8.

Abstract

The developing advances of microresonator-based Kerr cavity solitons have enabled versatile applications ranging from communication, signal processing to high-precision measurements. Resonator dispersion is the key factor determining the Kerr comb dynamics. Near the zero group-velocity-dispersion (GVD) regime, low-noise and broadband microcomb sources are achievable, which is crucial to the application of the Kerr soliton. When the GVD is almost vanished, higher-order dispersion can significantly affect the Kerr comb dynamics. Although many studies have investigated the Kerr comb dynamics near the zero-dispersion regime in microresonator or fiber ring system, limited by dispersion profiles and dispersion perturbations, the near-zero-dispersion soliton structure pumped in the anomalous dispersion side is still elusive so far. Here, we theoretically and experimentally investigate the microcomb dynamics in fiber-based Fabry-Perot microresonator with ultra-small anomalous GVD. We obtain 2/3-octave-spaning microcombs with ~10 GHz spacing, >84 THz span, and >8400 comb lines in the modulational instability (MI) state, without any external nonlinear spectral broadening. Such widely-spanned MI combs are also able to enter the soliton state. Moreover, we report the first observation of anomalous-dispersion based near-zero-dispersion solitons, which exhibits a local repetition rate up to 8.6 THz, an individual pulse duration <100 fs, a span >32 THz and >3200 comb lines. These two distinct comb states have their own advantages. The broadband MI combs possess high conversion efficiency and wide existing range, while the near-zero-dispersion soliton exhibits relatively low phase noise and ultra-high local repetition rate. This work complements the dynamics of Kerr cavity soliton near the zero-dispersion regime, and may stimulate cross-disciplinary inspirations ranging from dispersion-controlled microresonators to broadband coherent comb devices.

摘要

基于微谐振器的克尔腔孤子的不断发展进步,已实现了从通信、信号处理到高精度测量等多种应用。谐振器色散是决定克尔频率梳动力学的关键因素。在零群速度色散(GVD)区域附近,可以实现低噪声和宽带微频率梳源,这对克尔孤子的应用至关重要。当GVD几乎消失时,高阶色散会显著影响克尔频率梳动力学。尽管许多研究已经在微谐振器或光纤环系统中研究了零色散区域附近的克尔频率梳动力学,但受色散分布和色散微扰的限制,到目前为止,在反常色散侧泵浦的近零色散孤子结构仍然难以捉摸。在此,我们通过理论和实验研究了具有超小反常GVD的光纤法布里-珀罗微谐振器中的微频率梳动力学。我们在调制不稳定性(MI)状态下获得了具有约10 GHz间隔、>84 THz带宽和>8400条梳状线的2/3倍频程跨度的微频率梳,无需任何外部非线性光谱展宽。这种宽跨度的MI频率梳也能够进入孤子状态。此外,我们首次观测到了基于反常色散的近零色散孤子,其局部重复率高达8.6 THz,单个脉冲持续时间<100 fs,带宽>32 THz且梳状线>3200条。这两种不同的频率梳状态各有优势。宽带MI频率梳具有高转换效率和广泛的存在范围,而近零色散孤子表现出相对较低的相位噪声和超高的局部重复率。这项工作补充了零色散区域附近克尔腔孤子的动力学,并可能激发从色散控制的微谐振器到宽带相干频率梳器件等跨学科的灵感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f0c/9892599/9dd1fa1fde5a/41377_2023_1076_Fig1_HTML.jpg

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