Litcius/Paper detail

Shape-preserving beam transmission through non-Hermitian disordered lattices

A. F. Tzortzakakis, Konstantinos G. Makris, Stefan Rotter, E. N. Economou

2020Physical review. A/Physical review, A21 citationsDOIOpen Access PDF

Abstract

We investigate the propagation of Gaussian beams through optical waveguide lattices characterized by correlated non-Hermitian disorder. In the framework of coupled mode theory, we demonstrate how the imaginary part of the refractive index needs to be adjusted to achieve perfect beam transmission, despite the presence of disorder. Remarkably, the effects of both diagonal and off-diagonal disorder in the waveguides and their couplings can be efficiently eliminated by our non-Hermitian design. Waveguide arrays thus provide an ideal platform for the experimental realization of non-Hermitian phenomena in the context of discrete photonics.

Topics & Concepts

Hermitian matrixDiagonalRealization (probability)Context (archaeology)Gaussian beamPhysicsWaveguideBeam (structure)Transmission (telecommunications)PhotonicsOpticsRefractive indexBeam propagation methodQuantum mechanicsMathematicsTelecommunicationsComputer scienceGeometryStatisticsBiologyPaleontologyQuantum Mechanics and Non-Hermitian PhysicsNonlinear Photonic SystemsQuantum chaos and dynamical systems