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Spectral Broadening in a Continuously Pumped Singly Resonant Second-Harmonic Cavity

Academic Article
Publication Date:
2021
abstract:
Optical frequency comb synthesizers with a wide spectral range are an essential tool for many research areas such as spectroscopy, precision metrology, optical communication, and sensing. Recent studies have demonstrated the direct generation of frequency combs, via second-order processes, that are centered on two different spectral regions separated by an octave. Here, we present the capability of optical quadratic frequency combs for broad-bandwidth spectral emission in unexplored regimes. We consider comb formation under phase-matched conditions in a continuous-wave pumped singly resonant second-harmonic cavity, with large intracavity power and control of the detuning over several cavity linewidths. The spectral analysis reveals quite distinctive sidebands that arise far away from the pump, singularly or in a mixed regime together with narrowband frequency combs. Notably, by increasing the input power, the optical frequency lines evolve into widely spaced frequency clusters, and at maximum power, they appear in a wavelength range spanning up to 100 nm. The obtained results demonstrate the capacity of second-order nonlinearities to produce direct comb within a wide range of wavelengths.
Iris type:
01.01 Articolo in rivista
Keywords:
optical frequency combs; quadratic nonlinearity; second-harmonic generation
List of contributors:
Mosca, Simona; Parisi, Maria
Authors of the University:
MOSCA SIMONA
PARISI MARIA
Handle:
https://iris.cnr.it/handle/20.500.14243/396183
Published in:
APPLIED SCIENCES
Journal
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