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Coexistence of quasi-CW and SBS-boosted selfQ-switched pulsing in ytterbium-doped fiber laser with low Q-factor cavity

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Coexistence of quasi-CW and SBS-boosted selfQ-switched pulsing in ytterbium-doped fiber laser with low Q-factor cavity

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dc.contributor.author Barmenkov, Yuri O.
dc.contributor.author Muniz-Cánovas, Pablo
dc.contributor.author Kir'yanov, A.
dc.contributor.author Carrascosa, A.
dc.contributor.author Cruz Muñoz, José Luis
dc.contributor.author Andrés, Miguel V.
dc.date.accessioned 2020-07-22T09:12:29Z
dc.date.available 2020-07-22T09:12:29Z
dc.date.issued 2020 es_ES
dc.identifier.citation Yuri O. Barmenkov, P. Muniz-Cánovas, A. V. Kir’yanov, A. A. Carrascosa, J. L. Cruz, and M. V. Andrés, "Coexistence of quasi-CW and SBS-boosted self-Q-switched pulsing in ytterbium-doped fiber laser with low Q-factor cavity," Journal Lightwave Technology, Vol. 38, pp. 3751-3758, 2020. es_ES
dc.identifier.uri https://hdl.handle.net/10550/75284
dc.description.abstract We report the results of an experimental study of an ytterbium-doped fiber laser with low Q-factor cavity. We demonstrate that the laser operates in two randomly alternating sub-regimes, quasi-CW (QCW) and self-Q-switching (SQS), the latter ignited by stimulated Brillouin scattering (SBS). We show that probability of each sub-regime depends on pump power: QCW dominates slightly above the laser threshold while SQS pulsing prevails at higher pump powers. We also discuss the featuring details of QCW sub-regime and its role in instabilities (jittering) of SBS-boosted SQS pulsing as well as the statisticalproperties of the latter. es_ES
dc.language.iso en es_ES
dc.subject optical fiber es_ES
dc.subject Q-switched laser es_ES
dc.subject fiber laser es_ES
dc.title Coexistence of quasi-CW and SBS-boosted selfQ-switched pulsing in ytterbium-doped fiber laser with low Q-factor cavity es_ES
dc.type journal article es_ES
dc.subject.unesco UNESCO::FÍSICA es_ES
dc.identifier.doi 10.1109/JLT.2020.2980480 es_ES
dc.type.hasVersion AM es_ES

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