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Spectral dynamics of modulation instability described using Akhmediev breather theory

dc.contributor.authorHammani, K
dc.contributor.authorWetzel, B
dc.contributor.authorKibler, Bertrand
dc.contributor.authorFatome, Julien
dc.contributor.authorFinot, Christophe
dc.contributor.authorMillot, Guy
dc.contributor.authorAkhmediev, Nail
dc.contributor.authorDudley, John M
dc.date.accessioned2015-12-10T23:32:37Z
dc.date.issued2011
dc.date.updated2016-02-24T08:18:42Z
dc.description.abstractThe Akhmediev breather formalism of modulation instability is extended to describe the spectral dynamics of induced multiple sideband generation from a modulated continuous wave field. Exact theoretical results describing the frequency domain evolution are compared with experiments performed using single mode fiber around 1550nm. The spectral theory is shown to reproduce the depletion dynamics of an injected modulated continuous wave pump and to describe the Fermi-Pasta-Ulam recurrence and recovery towards the initial state. Realistic simulations including higher-order dispersion, loss, and Raman scattering are used to identify that the primary physical factors that preclude perfect recurrence are related to imperfect initial conditions.
dc.identifier.issn0146-9592
dc.identifier.urihttp://hdl.handle.net/1885/68911
dc.publisherOptical Society of America
dc.rightsAuthor/s retain copyrighten_AU
dc.sourceOptics Letters
dc.subjectKeywords: Continuous Wave; Continuous wave pump; Frequency domains; Higher order dispersion; Initial conditions; Initial state; Modulation instabilities; Physical factors; Realistic simulation; Spectral dynamics; Spectral theory; Theoretical result; Single mode fib
dc.titleSpectral dynamics of modulation instability described using Akhmediev breather theory
dc.typeJournal article
dcterms.accessRightsOpen Accessen_AU
local.bibliographicCitation.issue11
local.bibliographicCitation.lastpage2142
local.bibliographicCitation.startpage2140
local.contributor.affiliationHammani, K, CNRS-Université de Bourgogne
local.contributor.affiliationWetzel, B, CNRS-Université de Franche-Comté
local.contributor.affiliationKibler, Bertrand, Universite de Bourgogne
local.contributor.affiliationFatome, Julien, Universite de Bourgogne
local.contributor.affiliationFinot, Christophe, Université de Bourgogne
local.contributor.affiliationMillot, Guy, Universite de Bourgogne
local.contributor.affiliationAkhmediev, Nail, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationDudley, John M, Universite de Franche-Comte, Institut FEMTO-ST
local.contributor.authoruidAkhmediev, Nail, u9111648
local.description.notesImported from ARIES
local.identifier.absfor020503 - Nonlinear Optics and Spectroscopy
local.identifier.absfor029902 - Complex Physical Systems
local.identifier.absfor020504 - Photonics, Optoelectronics and Optical Communications
local.identifier.absseo970101 - Expanding Knowledge in the Mathematical Sciences
local.identifier.absseo970102 - Expanding Knowledge in the Physical Sciences
local.identifier.ariespublicationf2965xPUB1865
local.identifier.citationvolume36
local.identifier.scopusID2-s2.0-79958183037
local.identifier.thomsonID000291149100064
local.type.statusPublished Version

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