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Tempering Hemispherical Radiative Properties with a Resonance Compilation
Conference paper

Tempering Hemispherical Radiative Properties with a Resonance Compilation

Y.-B. Chen, Y.-C. Lee, Y.-F. Chang, Y.-H. Lin and P.-H. Chen
5th ASME Micro/Nanoscale Heat and Mass Transfer International Conference 5th ASME Micro/Nanoscale Heat and Mass Transfer International Conference
2016

Abstract

This work demonstrates tailored hemispherical absorptance A, reflectance R, and transmittance T spectra at the coexistence of three resonances. The localized surface plasmon resonance (LSPR) is excited by a hexagonal array of 15-nm-thick circular Au pillars at the wavelength ?LSPR. The Berreman and epsilon near zero (ENZ) mode resonances are generated within a fixed region ?ENZ ? 1.5 ?m using diffracted waves inside a 230-nm-thick indium-tin-oxide film. The ?LSPR of four samples approaches ?ENZ via increasing pillar diameters. For the first time, a broadband absorptance enhancement resulting from three compatible resonances is shown. The resonance compilation together with material loss cause failure of a popular LSPR indicator, which are replaced by the robust indicators proposed here.

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