Dispersion of resonant modes in patch antenna lattices

Spectroscopic polar angle resolved Mueller matrix ellipsometry at multiple azimuthal incidences, together with a full-field model, reveal new details in the interplay between localized gap surface plasmon resonances and propagating surface plasmon polaritons (SPPs) in a rectangular array of metal-in...

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Veröffentlicht in:Optics letters 2022-01, Vol.47 (1), p.158-161
Hauptverfasser: Walmsness, Per Magnus, Hale, Nathan, Kildemo, Morten
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Kildemo, Morten
description Spectroscopic polar angle resolved Mueller matrix ellipsometry at multiple azimuthal incidences, together with a full-field model, reveal new details in the interplay between localized gap surface plasmon resonances and propagating surface plasmon polaritons (SPPs) in a rectangular array of metal-insulator-metal patches. A plane-wave expansion of the field in the insulator shows that the fundamental localized resonances are composed of oppositely propagating modes. Sharp dispersive resonances observed in p-polarization, excited near the opening of diffracted orders, are shown to be grating coupled SPPs. The SPPs show strong coupling with localized modes of similar symmetry, while they appear suppressed by modes of dissimilar symmetry.
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source Optica Publishing Group Journals
subjects Ellipsometry
Lattices
Patch antennas
Polaritons
Propagation modes
Symmetry
title Dispersion of resonant modes in patch antenna lattices
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