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Impact of higher-order dispersion on frequency-modulated combs

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arxiv 2310.09915 v1 pith:3F5TVNGO submitted 2023-10-15 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords combscombdispersionbandwidthexperimentalfrequencyfrequency-modulatedhigher-order
verification ladder T0 review T1 audit T2 compute T3 formal
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Frequency-modulated (FM) combs form spontaneously in free-running semiconductor lasers and possess a vast potential for spectroscopic applications. Despite recent progress in obtaining a conclusive theoretical description, experimental FM combs often exhibit non-ideal traits, which prevents their widespread use. Here we explain this by providing a clear theoretical and experimental study of the impact of the higher-order dispersion on FM combs. We reveal that spectrally-dependent dispersion is detrimental for comb performance and leads to a decreased comb bandwidth and the appearance of spectral holes. These undesirable traits can be mended by applying a radio-frequency modulation of the laser bias. We show that electrical injection-locking of the laser leads to a significant increase of the comb bandwidth, a uniform-like spectral amplitudes, and the rectification of the instantaneous frequency to recover a nearly linear frequency chirp of FM combs.

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