Valley Hall edge solitons in a photonic graphene

We predict the existence and study properties of the valley Hall edge solitons in a composite photonic graphene with a domain wall between two honeycomb lattices with broken inversion symmetry. Inversion symmetry in our system is broken due to detuning introduced into constituent sublattices of the...

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Veröffentlicht in:Optics express 2021-11, Vol.29 (24), p.39755-39765
Hauptverfasser: Tang, Qian, Ren, Boquan, Kompanets, Victor O., Kartashov, Yaroslav, Li, Yongdong, Zhang, Yiqi
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container_end_page 39765
container_issue 24
container_start_page 39755
container_title Optics express
container_volume 29
creator Tang, Qian
Ren, Boquan
Kompanets, Victor O.
Kartashov, Yaroslav
Li, Yongdong
Zhang, Yiqi
description We predict the existence and study properties of the valley Hall edge solitons in a composite photonic graphene with a domain wall between two honeycomb lattices with broken inversion symmetry. Inversion symmetry in our system is broken due to detuning introduced into constituent sublattices of the honeycomb structure. We show that nonlinear valley Hall edge states with sufficiently high amplitude bifurcating from the linear valley Hall edge state supported by the domain wall, can split into sets of bright spots due to development of the modulational instability, and that such an instability is a precursor for the formation of topological bright valley Hall edge solitons localized due to nonlinear self-action and travelling along the domain wall over large distances. Topological protection of the valley Hall edge solitons is demonstrated by modeling their passage through sharp corners of the O-shaped domain wall. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
doi_str_mv 10.1364/OE.442338
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subjects Optics
Physical Sciences
Science & Technology
title Valley Hall edge solitons in a photonic graphene
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