Periodic pulse train conformation based on the temporal Radon-Wigner transform

cic.isFulltexttruees
cic.isPeerReviewedtruees
cic.lugarDesarrolloCentro de Investigaciones Ópticas es
cic.versioninfo:eu-repo/semantics/submittedVersiones
dc.date.accessioned2015-05-15T14:32:58Z
dc.date.available2015-05-15T14:32:58Z
dc.identifier.urihttps://digital.cic.gba.gob.ar/handle/11746/495
dc.titlePeriodic pulse train conformation based on the temporal Radon-Wigner transformen
dc.typeArtículoes
dcterms.abstractBy using the Radon–Wigner transform (RWT), we analyze the temporal selfimaging or Talbot effect for producing well-conformed pulse trains with variable repetition rates and duty-cycles. The relationships linking the selfimaging conditions with the fractional orders of the RWT are first obtained for unchirped pulse trains. Then, we extend the analysis to chirped pulse sequences by deriving the conditions to be fulfilled by an equivalent unchirped pulse train producing the same selfimage irradiances. This result becomes relevant for observing well-defined high order fractional selfimaging, which are of interest due to their repetition rate multiplication. Besides, the effect of the finite extension of the pulse train on the selfimage quality is analyzed and a condition is found for relating the required minimum pulse number with the chirp parameter of the pulses.en
dcterms.creator.authorCuadrado Laborde, Christianes
dcterms.creator.authorCostanzo Caso, Pablo Alejandroes
dcterms.creator.authorDuchowicz, Ricardoes
dcterms.creator.authorSicre, Enrique Eduardoes
dcterms.extent10 p.es
dcterms.isPartOf.issue275es
dcterms.isPartOf.seriesOptics Communicationses
dcterms.issued2007
dcterms.languageIngléses
dcterms.licenseAttribution 4.0 International (BY 4.0)es
dcterms.publisherCentro de Investigaciones Ópticas (CIOp)es
dcterms.relation30 años (1977-2007): Centro de Investigaciones Ópticas (CIOp)es
dcterms.subjectPulse propagationen
dcterms.subjectTemporal Talbot effecten
dcterms.subjectPhase-space signal representationsen
dcterms.subject.materiaCiencias Físicases

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