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Revealing non-Hermitian band structure of photonic Floquet media

Cited 6 time in Web of Science Cited 10 time in Scopus
Authors

Park, Jagang; Cho, Hyukjoon; Lee, Seojoo; Lee, Kyungmin; Lee, Kanghee; Park, Hee Chul; Ryu, Jung -Wan; Park, Namkyoo; Jeon, Sanggeun; Min, Bumki

Issue Date
2022-10
Publisher
American Association for the Advancement of Science
Citation
Science Advances, Vol.8 No.40, p. eabo6220
Abstract
Periodically driven systems are ubiquitously found in both classical and quantum regimes. In the field of photonics, these Floquet systems have begun to provide insight into how time periodicity can extend the concept of spatially periodic photonic crystals and metamaterials to the time domain. However, despite the necessity arising from the presence of nonreciprocal coupling between states in a photonic Floquet medium, a unified non-Hermitian band structure description remains elusive. We experimentally reveal the unique Bloch-Floquet and non-Bloch band structures of a photonic Floquet medium emulated in the microwave regime with a one-dimensional array of time -periodically driven resonators. These non-Hermitian band structures are shown to be two measurable distinct subsets of complex eigenfrequency surfaces of the photonic Floquet medium defined in complex momentum space.
ISSN
2375-2548
URI
https://hdl.handle.net/10371/188965
DOI
https://doi.org/10.1126/sciadv.abo6220
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