Switchable Dual-Band Generation of Femtosecond Pulses in a Mode-Locked Erbium-Doped Fiber Laser Based on Monolayer Graphene

This work presents a stable and switchable dual-band generation from a polarization-dependent Erbium-doped fiber laser mode-locked by monolayer graphene as a saturable absorber. The ultrashort generated pulses at single band exhibit spectral (temporal) widths of 8.8 nm (305 fs) and 9 nm (384 fs) at...

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Veröffentlicht in:Journal of lightwave technology 2024-12, Vol.42 (23), p.8405-8413
Hauptverfasser: S., Sergio Castrillon, A., Esteban Marulanda, Steinberg, David, Perez, Andres Betancur, Botia, Javier F., Cardenas, Ana M., Saito, Lucia A. M., de Souza, EA Thoroh, Zapata, Juan D.
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Sprache:eng
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Zusammenfassung:This work presents a stable and switchable dual-band generation from a polarization-dependent Erbium-doped fiber laser mode-locked by monolayer graphene as a saturable absorber. The ultrashort generated pulses at single band exhibit spectral (temporal) widths of 8.8 nm (305 fs) and 9 nm (384 fs) at 1536 nm and 1557 nm, respectively, while the simultaneous dual-band state ensured a spectral width of 5 and 6 nm for both wavelengths, which are the best dual-band mode-locked performances of the literature obtained from an EDFL. Also, its dual-band spectral evolution was analyzed by changing the pumping power and the intracavity polarization state via a motorized polarization controller. Finally, our simulation provided an excellent qualitative explanation of the laser switching as a function of pumping power due to the change in EDF gain. We found a relative percentage error between experimental results and simulation of 22.7%, 13.3%, 9%, and 8.3% for 1530 nm, 1556 nm, and dual-band left and right central wavelength, respectively.
ISSN:0733-8724
1558-2213
DOI:10.1109/JLT.2024.3427135