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Coherent supercontinuum generation in all-normal dispersion Si3N4 waveguides
Author(s) -
Israel Rebolledo-Salgado,
Zhichao Ye,
Simon Christensen,
Fuchuan Lei,
Krishna Twayana,
Jochen Schröder,
Martin Zelán,
Víctor Torres–Company
Publication year - 2022
Publication title -
optics express
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.450987
Subject(s) - supercontinuum , doppler broadening , optics , picosecond , femtosecond , materials science , dispersion (optics) , photonics , optoelectronics , physics , laser , optical fiber , photonic crystal fiber , spectral line , astronomy
Spectral broadening of optical frequency combs with high repetition rate is of significant interest in optical communications, radio-frequency photonics and spectroscopy. Silicon nitride waveguides (Si 3 N 4 ) in the anomalous dispersion region have shown efficient supercontinuum generation spanning an octave-bandwidth. However, the broadening mechanism in this regime is usually attained with femtosecond pulses in order to maintain the coherence. Supercontinuum generation in the normal dispersion regime is more prone to longer (ps) pulses, but the implementation in normal dispersion silicon nitride waveguides is challenging as it possesses strong requirements in propagation length and losses. Here, we experimentally demonstrate the use of a Si 3 N 4 waveguide to perform coherent spectral broadening using pulses in the picosecond regime with high repetition rate. Moreover, our work explores the formation of optical wave breaking using a higher energy pulse which enables the generation of a coherent octave spanning spectrum. These results offer a new prospect for coherent broadening using long duration pulses and replacing bulky optical components.

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