Modelocking and femtosecond pulse generation in chip-based frequency combs

We investigate simultaneously the temporal and optical and radio-frequency spectral properties of parametric frequency combs generated in silicon-nitride microresonators and observe that the system undergoes a transition to a mode-locked state. We demonstrate the generation of sub-200-fs pulses at a...

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Veröffentlicht in:Optics express 2013-01, Vol.21 (1), p.1335-1343
Hauptverfasser: Saha, Kasturi, Okawachi, Yoshitomo, Shim, Bonggu, Levy, Jacob S, Salem, Reza, Johnson, Adrea R, Foster, Mark A, Lamont, Michael R E, Lipson, Michal, Gaeta, Alexander L
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container_end_page 1343
container_issue 1
container_start_page 1335
container_title Optics express
container_volume 21
creator Saha, Kasturi
Okawachi, Yoshitomo
Shim, Bonggu
Levy, Jacob S
Salem, Reza
Johnson, Adrea R
Foster, Mark A
Lamont, Michael R E
Lipson, Michal
Gaeta, Alexander L
description We investigate simultaneously the temporal and optical and radio-frequency spectral properties of parametric frequency combs generated in silicon-nitride microresonators and observe that the system undergoes a transition to a mode-locked state. We demonstrate the generation of sub-200-fs pulses at a repetition rate of 99 GHz. Our calculations show that pulse generation in this system is consistent with soliton modelocking. Ultimately, such parametric devices offer the potential of producing ultra-short laser pulses from the visible to mid-infrared regime at repetition rates from GHz to THz.
doi_str_mv 10.1364/OE.21.001335
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title Modelocking and femtosecond pulse generation in chip-based frequency combs
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