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异常点激光器中的动态增益与频率梳形成

Dynamic gain and frequency comb formation in exceptional-point lasers.

作者信息

Gao Xingwei, He Hao, Sobolewski Scott, Cerjan Alexander, Hsu Chia Wei

机构信息

Ming Hsieh Department of Electrical and Computer Engineering, University of Southern California, Los Angeles, CA, 90089, USA.

Center for Integrated Nanotechnologies, Sandia National Laboratories, Albuquerque, NM, 87185, USA.

出版信息

Nat Commun. 2024 Oct 4;15(1):8618. doi: 10.1038/s41467-024-52957-4.

Abstract

Exceptional points (EPs)-singularities in the parameter space of non-Hermitian systems where two nearby eigenmodes coalesce-feature unique properties with applications such as sensitivity enhancement and chiral emission. Existing realizations of EP lasers operate with static populations in the gain medium. By analyzing the full-wave Maxwell-Bloch equations, here we show that in a laser operating sufficiently close to an EP, the nonlinear gain will spontaneously induce a multi-spectral multi-modal instability above a pump threshold, which initiates an oscillating population inversion and generates a frequency comb. The efficiency of comb generation is enhanced by both the spectral degeneracy and the spatial coalescence of modes near an EP. Such an "EP comb" has a widely tunable repetition rate, self-starts without external modulators or a continuous-wave pump, and can be realized with an ultra-compact footprint. We develop an exact solution of the Maxwell-Bloch equations with an oscillating inversion, describing all spatiotemporal properties of the EP comb as a limit cycle. We numerically illustrate this phenomenon in a 5-μm-long gain-loss coupled AlGaAs cavity and adjust the EP comb repetition rate from 20 to 27 GHz. This work provides a rigorous spatiotemporal description of the rich laser behaviors that arise from the interplay between the non-Hermiticity, nonlinearity, and dynamics of a gain medium.

摘要

例外点(EPs)——非厄米系统参数空间中的奇点,两个相邻本征模在此处合并——具有独特性质,可应用于诸如灵敏度增强和手性发射等领域。现有的EP激光器在增益介质中以静态粒子数运行。通过分析全波麦克斯韦-布洛赫方程,我们在此表明,在足够接近例外点运行的激光器中,非线性增益将在泵浦阈值以上自发地引发多光谱多模不稳定性,从而启动振荡粒子数反转并产生频率梳。例外点附近模式的光谱简并和空间合并都提高了频率梳的产生效率。这种“EP梳”具有广泛可调的重复率,无需外部调制器或连续波泵浦即可自启动,并且可以通过超紧凑的结构实现。我们推导出了具有振荡反转的麦克斯韦-布洛赫方程的精确解,将EP梳的所有时空特性描述为一个极限环。我们在一个5μm长的增益-损耗耦合AlGaAs腔中对这一现象进行了数值演示,并将EP梳的重复率从20GHz调整到27GHz。这项工作对增益介质的非厄米性、非线性和动力学之间相互作用所产生的丰富激光行为提供了严格的时空描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/582f/11452692/dc7611f97f3a/41467_2024_52957_Fig1_HTML.jpg

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