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Nonlinear parity-time-symmetric transition in finite-size optical couplers

Abstract

Parity-time-symmetric (PT\mathcal{PT}-symmetric) optical waveguide couplers offer a great potential for future applications in integrated optics. Studies of nonlinear PT\mathcal{PT}-symmetric couplers present new possibilities for ultracompact configurable all-optical signal processing. Here, we predict nonlinearly triggered transition from a full to a broken PT\mathcal{PT}-symmetric regime in finite-size systems described by smooth permittivity profiles and, in particular, in a conventional discrete waveguide directional coupler configuration with a rectangular permittivity profile. These results suggest a practical route for experimental realization of such systems

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