Noncontractible loop states from a partially flat band in a photonic borophene lattice

Flat band systems are commonly associated with compact localized states (CLSs) that arise from the macroscopic degeneracy of eigenstates at the flat band energy. However, in the case of singular flat bands, conventional localized flat band states are incomplete, leading to the existence of noncontra...

Verfasser: Menz, Philip
Hanafi, Haissam
Imbrock, Jörg
Denz, Cornelia
FB/Einrichtung:FB 11: Physik
Dokumenttypen:Artikel
Medientypen:Text
Erscheinungsdatum:2023
Publikation in MIAMI:18.01.2024
Datum der letzten Änderung:18.01.2024
Angaben zur Ausgabe:[Electronic ed.]
Quelle:Nanophotonics 12 (2023) 17, 3409–3415
Schlagwörter:borophene; compact localized states (CLS); flat band; noncontractible loop states (NLS); topological photonics; wave localization
Fachgebiet (DDC):530: Physik
Lizenz:CC BY 4.0
Sprache:English
Förderung:Finanziert durch den Open-Access-Publikationsfonds der Universität Münster.
Format:PDF-Dokument
URN:urn:nbn:de:hbz:6-67988451457
Weitere Identifikatoren:DOI: 10.17879/77988693903
Permalink:https://nbn-resolving.de/urn:nbn:de:hbz:6-67988451457
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    Flat band systems are commonly associated with compact localized states (CLSs) that arise from the macroscopic degeneracy of eigenstates at the flat band energy. However, in the case of singular flat bands, conventional localized flat band states are incomplete, leading to the existence of noncontractible loop states (NLSs) with nontrivial real-space topology. In this study, we experimentally and analytically demonstrate the existence of NLSs in a 2D photonic borophene lattice without a CLS counterpart, owing to a band that is flat only along high-symmetry lines and dispersive along others. Our findings challenge the conventional notion that NLSs are necessarily linked to robust boundary modes due to a bulk-boundary correspondence. Protected by the band flatness that originates from band touching, NLSs play a significant role in investigating the fundamental physics of flat band systems.