Quasi-bound states in the continuum for electromagnetic induced transparency and strong excitonic coupling
Citation:
Hajian, H. and Zhang, X. and Mccormack, O. and Zhang, Y. and Dobie, J. and Rukhlenko, I.D. and Ozbay, E. and Bradley, A.L., Quasi-bound states in the continuum for electromagnetic induced transparency and strong excitonic coupling, Optics Express, 32, 11, 2024, 19163-19174Download Item:
Abstract:
Advancing on previous reports, we utilize quasi-bound states in the continuum (q-BICs) supported by a metasurface of TiO2 meta-atoms with broken inversion symmetry on an SiO2 substrate, for two possible applications. Firstly, we demonstrate that by tuning the metasurface's asymmetric parameter, a spectral overlap between a broad q-BIC and a narrow magnetic dipole resonance is achieved, yielding an electromagnetic induced transparency analogue with a 50 μs group delay. Secondly, we have found that, due to the strong coupling between the q-BIC and WS2 exciton at room temperature and normal incidence, by integrating a single layer of WS2 to the metasurface, a 37.9 meV Rabi splitting in the absorptance spectrum with 50% absorption efficiency is obtained. These findings promise feasible two-port devices for visible range slow-light characteristics or nanoscale excitonic coupling
Sponsor
Grant Number
Science Foundation Ireland (SFI)
IPIC 12/RC/2276
Science Foundation Ireland (SFI)
AMBER 12/RC/2278
Science Foundation Ireland (SFI)
21/FFP-P/10187
Author's Homepage:
http://people.tcd.ie/bradlel
Author: Bradley, Louise
Sponsor:
Science Foundation Ireland (SFI)Science Foundation Ireland (SFI)
Science Foundation Ireland (SFI)
Type of material:
Journal ArticleCollections
Series/Report no:
Optics Express32
11
Availability:
Full text availableSubject:
quasi-bound states, metasurface, 37.9 meV Rabi splittingDOI:
http://dx.doi.org/10.1364/OE.525535Metadata
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