Discrete solitons and vortices on two-dimensional lattices of PT - Symmetric couplers

Zhaopin Chen, Jingfeng Liu, Shenhe Fu, Yongyao Li, Boris A. Malomed

Research output: Contribution to journalArticlepeer-review

51 Scopus citations

Abstract

We introduce a 2D network built of PT - symmetric dimers with on-site cubic nonlinearity, the gain and loss elements of the dimers being linked by parallel square-shaped lattices. The system may be realized as a set of PT - symmetric dual-core waveguides embedded into a photonic crystal. The system supports PT - symmetric and antisymmetric fundamental solitons (FSs) and on-site-centered solitary vortices (OnVs). Stability of these discrete solitons is the central topic of the consideration. Their stability regions in the underlying parameter space are identified through the computation of stability eigenvalues, and verified by direct simulations. Symmetric FSs represent the system's ground state, being stable at lowest values of the power, while anti-symmetric FSs and OnVs are stable at higher powers. Symmetric OnVs, which are also stable at lower powers, are remarkably robust modes: on the contrary to other PT - symmetric states, unstable OnVs do not blow up, but spontaneously rebuild themselves into stable FSs.

Original languageEnglish
Pages (from-to)29679-29692
Number of pages14
JournalOptics Express
Volume22
Issue number24
DOIs
StatePublished - 1 Dec 2014

Funding

FundersFunder number
East China Normal University
National Natural Science Foundation of China11204089, 11104083, 11205063

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