Nonlinear plasmonic amplification via dissipative soliton-plasmon resonances
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Nonlinear plasmonic amplification via dissipative soliton-plasmon resonances

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Nonlinear plasmonic amplification via dissipative soliton-plasmon resonances

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dc.contributor.author Ferrando Cogollos, Albert
dc.date.accessioned 2018-04-12T12:58:03Z
dc.date.available 2018-04-12T12:58:03Z
dc.date.issued 2017
dc.identifier.uri http://hdl.handle.net/10550/65610
dc.description.abstract In this contribution we introduce a strategy for the compensation of plasmonic losses based on a recently proposed nonlinear mechanism: the resonant interaction between surface plasmon polaritons and spatial solitons propagating in parallel along a metal/dielectric/Kerr structure. This mechanism naturally leads to the generation of a quasiparticle excitation, the so-called soliplasmon resonance. We analyze the role played by the effective nonlinear coupling inherent to this system and how this can be used to provide a mechanism of quasiresonant nonlinear excitation of surface plasmon polaritons. We will pay particular attention to the introduction of asymmetric linear gain in the Kerr medium. The unique combination of nonlinear propagation, nonlinear coupling, and gain give rise to a scenario for the excitation of long-range surface plasmon polaritons with distinguishing characteristics. The connection between plasmonic losses and soliplasmon resonances in the presence of gain will be discussed.
dc.language.iso eng
dc.relation.ispartof Physical review, A, Atomic, molecular, and optical physics, 2017, vol. 95, num. 1, p. 013816-1-013816-18
dc.source Ferrando Cogollos, Albert 2017 Nonlinear plasmonic amplification via dissipative soliton-plasmon resonances Physical review, A, Atomic, molecular, and optical physics 95 1 013816-1 013816-18
dc.subject Dinàmica de fluids
dc.subject Mecànica ondulatòria
dc.subject Òptica
dc.title Nonlinear plasmonic amplification via dissipative soliton-plasmon resonances
dc.type journal article es_ES
dc.date.updated 2018-04-12T12:58:03Z
dc.identifier.doi https://doi.org/10.1103/PhysRevA.95.013816
dc.identifier.idgrec 124713
dc.rights.accessRights open access es_ES

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