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Broadband tuning of polarization modulation instability in microstructured optical fibers

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Broadband tuning of polarization modulation instability in microstructured optical fibers

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dc.contributor.author Loredo-Trejo, Abraham
dc.contributor.author Díez Cremades, Antonio
dc.contributor.author Silvestre Mora, Enrique
dc.contributor.author Andrés, Miguel V.
dc.date.accessioned 2020-09-01T10:30:36Z
dc.date.available 2020-09-01T10:30:36Z
dc.date.issued 2020 es_ES
dc.identifier.citation A. Loredo-Trejo, A. Díez, E. Silvestre, and M. V. Andrés, "Broadband tuning of polarization modulation instability in microstructured optical fibers", Optics Letters, Vol. 45, pp. 4891-4894, 2020. es_ES
dc.identifier.uri https://hdl.handle.net/10550/75439
dc.description.abstract The wideband tuning of strong bands generated through polarization modulation instability (PMI) in microstructured optical fibers (MOFs) is reported. Tunability is achieved by exploiting the dependence of the phase-matching condition on the fiber’s chromatic dispersion and birefringence, which is particularly sensitive when the fiber is pumped near the zero dispersion wavelength. MOFs designed to accomplish PMI phase-matching when they are infiltrated with ethanol and pumped at 1064 nm were designed and fabricated. Taking advantage of the large thermo-optic coefficient of ethanol, both chromatic dispersion and birefringence were varied through temperature. Wavelength shifts from 937 nm to 863 nm (anti-Stokes) and from 1231 nm to 1387 nm (Stokes) are demonstrated. Such a tuning range corresponds to a frequency shift between the pump and a PMI sideband ranging from 1274cm−1 to 2189cm−1. es_ES
dc.language.iso en es_ES
dc.subject nonlinear optics es_ES
dc.subject four wave mixing es_ES
dc.subject modulation instability es_ES
dc.subject polarization es_ES
dc.subject microstructured optical fibers es_ES
dc.subject optical fibers es_ES
dc.title Broadband tuning of polarization modulation instability in microstructured optical fibers es_ES
dc.type journal article es_ES
dc.subject.unesco UNESCO::FÍSICA es_ES
dc.identifier.doi 10.1364/OL.400039 es_ES
dc.identifier.idgrec 140919

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