Ultra-high-Q resonances in plasmonic metasurfaces

Author:

Bin-Alam M. Saad,Reshef OradORCID,Mamchur Yaryna,Alam M. ZahirulORCID,Carlow Graham,Upham Jeremy,Sullivan Brian T.,Ménard Jean-MichelORCID,Huttunen Mikko J.,Boyd Robert W.,Dolgaleva Ksenia

Abstract

AbstractPlasmonic nanostructures hold promise for the realization of ultra-thin sub-wavelength devices, reducing power operating thresholds and enabling nonlinear optical functionality in metasurfaces. However, this promise is substantially undercut by absorption introduced by resistive losses, causing the metasurface community to turn away from plasmonics in favour of alternative material platforms (e.g., dielectrics) that provide weaker field enhancement, but more tolerable losses. Here, we report a plasmonic metasurface with a quality-factor (Q-factor) of 2340 in the telecommunication C band by exploiting surface lattice resonances (SLRs), exceeding the record by an order of magnitude. Additionally, we show that SLRs retain many of the same benefits as localized plasmonic resonances, such as field enhancement and strong confinement of light along the metal surface. Our results demonstrate that SLRs provide an exciting and unexplored method to tailor incident light fields, and could pave the way to flexible wavelength-scale devices for any optical resonating application.

Funder

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada

Mitacs

Academy of Finland

Ontario Graduate Scholarship (OGS) University of Ottawa Excellence Scholarship University of Ottawa International Experience Scholarship

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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