PT-symmetric invisible defects and confluent Darboux-Crum transformations

Francisco Correa, Vít Jakubský, and Mikhail S. Plyushchay
Phys. Rev. A 92, 023839 – Published 20 August 2015

Abstract

We show that confluent Darboux-Crum transformations with emergent Jordan states are an effective tool for the design of optical systems governed by the Helmholtz equation under the paraxial approximation. The construction of generic, asymptotically real and periodic, PT-symmetric systems with local complex periodicity defects is discussed in detail. We show how the decay rate of the defect is related with the energy of the bound state trapped by the defect. In particular, the bound states in the continuum are confined by the periodicity defects with power law decay. We show that these defects possess complete invisibility; the wave functions of the system coincide asymptotically with the wave functions of the undistorted setting. The general results are illustrated with explicit examples of reflectionless models and systems with one spectral gap. We show that the spectral properties of the studied models are reflected by Lax-Novikov-type integrals of motion and associated supersymmetric structures of bosonized and exotic nature.

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  • Received 5 June 2015

DOI:https://doi.org/10.1103/PhysRevA.92.023839

©2015 American Physical Society

Authors & Affiliations

Francisco Correa1,2,*, Vít Jakubský3,†, and Mikhail S. Plyushchay4,‡

  • 1Leibniz Universität Hannover, Appelstraße 2, D-30167 Hannover, Germany
  • 2Centro de Estudios Científicos (CECs), Arturo Prat 514, Valdivia, Chile
  • 3Department of Theoretical Physics, Nuclear Physics Institute, 25068 Řež, Czech Republic
  • 4Departamento de Física, Universidad de Santiago de Chile, Casilla 307, Santiago 2, Chile

  • *correa@cecs.cl
  • jakub@ujf.cas.cz
  • mikhail.plyushchay@usach.cl

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Vol. 92, Iss. 2 — August 2015

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