Self-localized states in photonic topological insulators

We propose solitons in a photonic topological insulator: self-localized wave packets forming topological edge states residing in the bulk of a nonlinear photonic topological insulator. These self-forming entities exhibit, despite being in the bulk, the property of unidirectional transport, similar t...

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Veröffentlicht in:Physical review letters 2013-12, Vol.111 (24), p.243905-243905, Article 243905
Hauptverfasser: Lumer, Yaakov, Plotnik, Yonatan, Rechtsman, Mikael C, Segev, Mordechai
Format: Artikel
Sprache:eng
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Zusammenfassung:We propose solitons in a photonic topological insulator: self-localized wave packets forming topological edge states residing in the bulk of a nonlinear photonic topological insulator. These self-forming entities exhibit, despite being in the bulk, the property of unidirectional transport, similar to the transport their linear counterparts display on the edge of a topological insulator. In the concrete case of a Floquet topological insulator, such a soliton forms when a wave packet induces, through nonlinearity, a defect region in a honeycomb lattice of helical optical waveguides, and at the same time the wave packet populates a continuously rotating outer (or inner) edge state of that region. The concept is universal and applicable to topological systems with nonlinear response or mean-field interactions.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.111.243905