Wavelength conversion using fiber cross-phase modulation driven by two pump waves

Wavelength conversion using all-optical phase modulation in a fiber driven by two pump waves is investigated. The operation features are analyzed using an all-optical phase modulation model with two parallel-/cross-polarized pump waves to generate a phase-preserving copy of the optical signal at an...

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Veröffentlicht in:Optics express 2019-06, Vol.27 (12), p.16767-16780
Hauptverfasser: Watanabe, Shigeki, Kato, Tomoyuki, Tanimura, Takahito, Schmidt-Langhorst, Carsten, Elschner, Robert, Sackey, Isaac, Schubert, Colja, Hoshida, Takeshi
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Sprache:eng
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Zusammenfassung:Wavelength conversion using all-optical phase modulation in a fiber driven by two pump waves is investigated. The operation features are analyzed using an all-optical phase modulation model with two parallel-/cross-polarized pump waves to generate a phase-preserving copy of the optical signal at an exact frequency up-/down-shifted by the two-pump detuning. The conversion efficiency is experimentally verified using a 300-m highly-nonlinear fiber. The results agree well with a theoretical prediction. The conversion bandwidth over 4 THz is achieved and error-free wavelength conversion for a 32-GBd polarization-division multiplexed 16QAM signal is demonstrated. The technique's applicability to a large-capacity wavelength-division multiplexed signals is also discussed.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.27.016767