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Gain-through-filtering enables tuneable frequency comb generation in passive optical resonators

机译:滤波增益可在无源光学谐振器中产生可调谐的频率梳

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摘要

Optical frequency combs (OFCs), consisting of a set of phase-locked, equally spaced laser frequency lines, have enabled a great leap in precision spectroscopy and metrology since seminal works of Hänsch et al. Nowadays, OFCs are cornerstones of a wealth of further applications ranging from chemistry and biology to astrophysics and including molecular fingerprinting and light detection and ranging (LIDAR) systems, among others. Driven passive optical resonators constitute the ideal platform for OFC generation in terms of compactness and low energy footprint. We propose here a technique for the generation of OFCs with a tuneable repetition rate in externally driven optical resonators based on the gain-through-filtering process, a simple and elegant method, due to asymmetric spectral filtering on one side of the pump wave. We demonstrate a proof-of-concept experimental result in a fibre resonator, pioneering a new technique that does not require specific engineering of the resonator dispersion to generate frequency-agile OFCs.
机译:自从Hänsch等人的开创性工作以来,由一组锁相,等距激光频率线组成的光学频率梳(OFC)使得精密光谱学和计量学有了巨大飞跃。如今,OFC已成为从化学和生物学到天体物理学等众多进一步应用的基石,包括分子指纹,光检测和测距(LIDAR)系统等。就紧凑性和低能耗而言,驱动无源光谐振器构成了OFC生成的理想平台。我们在此提出一种技术,该技术基于增益滤波过程,是一种在外部驱动的光学谐振器中具有可调节重复率的OFC的生成技术,这是一种简单而优雅的方法,这是由于在泵浦波的一侧进行了非对称频谱滤波。我们在光纤谐振器中演示了概念验证的实验结果,率先提出了一种新技术,该技术不需要对谐振器色散进行特殊设计即可生成频率捷变的OFC。

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