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Realization of an anomalous Floquet topological system with ultracold atoms

Authors :
Wintersperger, Karen
Braun, Christoph
Ünal, F. Nur
Eckardt, André
Di Liberto, Marco
Goldman, Nathan
Bloch, Immanuel
Aidelsburger, Monika
Source :
Nature Physics 16, 1058-1063 (2020)
Publication Year :
2020

Abstract

Coherent control via periodic modulation, also known as Floquet engineering, has emerged as a powerful experimental method for the realization of novel quantum systems with exotic properties. In particular, it has been employed to study topological phenomena in a variety of different platforms. In driven systems, the topological properties of the quasienergy bands can often be determined by standard topological invariants, such as Chern numbers, which are commonly used in static systems. However, due to the periodic nature of the quasienergy spectrum, this topological description is incomplete and new invariants are required to fully capture the topological properties of these driven settings. Most prominently, there exist two-dimensional anomalous Floquet systems that exhibit robust chiral edge modes, despite all Chern numbers are equal to zero. Here, we realize such a system with bosonic atoms in a periodically-driven honeycomb lattice and infer the complete set of topological invariants from energy gap measurements and local Hall deflections.

Details

Database :
arXiv
Journal :
Nature Physics 16, 1058-1063 (2020)
Publication Type :
Report
Accession number :
edsarx.2002.09840
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41567-020-0949-y