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二次非线性谐振器中的光学频率梳

Optical Frequency Combs in Quadratically Nonlinear Resonators.

作者信息

Ricciardi Iolanda, Mosca Simona, Parisi Maria, Leo François, Hansson Tobias, Erkintalo Miro, Maddaloni Pasquale, De Natale Paolo, Wabnitz Stefan, De Rosa Maurizio

机构信息

CNR-INO, Istituto Nazionale di Ottica, Via Campi Flegrei 34, I-80078 Pozzuoli (NA), Italy.

INFN, Istituto Nazionale di Fisica Nucleare, Sez. di Napoli, Complesso Universitario di M.S. Angelo, Via Cintia, 80126 Napoli, Italy.

出版信息

Micromachines (Basel). 2020 Feb 24;11(2):230. doi: 10.3390/mi11020230.

Abstract

Optical frequency combs are one of the most remarkable inventions in recent decades. Originally conceived as the spectral counterpart of the train of short pulses emitted by mode-locked lasers, frequency combs have also been subsequently generated in continuously pumped microresonators, through third-order parametric processes. Quite recently, direct generation of optical frequency combs has been demonstrated in continuous-wave laser-pumped optical resonators with a second-order nonlinear medium inside. Here, we present a concise introduction to such quadratic combs and the physical mechanism that underlies their formation. We mainly review our recent experimental and theoretical work on formation and dynamics of quadratic frequency combs. We experimentally demonstrated comb generation in two configurations: a cavity for second harmonic generation, where combs are generated both around the pump frequency and its second harmonic and a degenerate optical parametric oscillator, where combs are generated around the pump frequency and its subharmonic. The experiments have been supported by a thorough theoretical analysis, aimed at modelling the dynamics of quadratic combs, both in frequency and time domains, providing useful insights into the physics of this new class of optical frequency comb synthesizers. Quadratic combs establish a new class of efficient frequency comb synthesizers, with unique features, which could enable straightforward access to new spectral regions and stimulate novel applications.

摘要

光频梳是近几十年来最引人注目的发明之一。最初,光频梳被认为是锁模激光器发出的短脉冲序列的光谱对应物,随后也通过三阶参量过程在连续泵浦的微谐振器中产生。最近,在内部含有二阶非线性介质的连续波激光泵浦光学谐振器中已经证明了光频梳的直接产生。在此,我们简要介绍这种二次谐波梳及其形成的物理机制。我们主要回顾我们最近关于二次谐波频率梳的形成和动力学的实验和理论工作。我们通过实验在两种配置中证明了梳状信号的产生:一种是用于二次谐波产生的腔,在泵浦频率及其二次谐波附近都能产生梳状信号;另一种是简并光学参量振荡器,在泵浦频率及其次谐波附近产生梳状信号。这些实验得到了全面理论分析的支持,该分析旨在对二次谐波梳在频域和时域的动力学进行建模,为这类新型光频梳合成器的物理特性提供了有用的见解。二次谐波梳建立了一类具有独特特性的新型高效频率梳合成器,这可以直接进入新的光谱区域并激发新的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6aa0/7074798/dd2f94f79ccd/micromachines-11-00230-g001.jpg

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