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Penetration Depth Engineering in Plasmonic Metafilms for Enhanced Reflection and Confinement

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Abstract

We introduce a metafilm consisting of regions of metal and dielectric, which has a much smaller penetration depth than that of a corresponding metal film, leading to enhanced device performance in lightweight ultrahigh reflectivity reflectors and increased packing density of subwavelength waveguides.

© 2020 The Author(s)

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More Like This
Engineering and Controlling Optical Tamm States Confined at Plasmonic Metasurfaces

Oleksandr Buchnev, Alexandr Belosludtsev, Victor Reshetnyak, Dean R. Evans, and Vassili A. Fedotov
FM1B.5 Frontiers in Optics (FiO) 2020

Capacitive-mediated strong coupling in terahertz plasmonic metafilms

Riad Yahiaoui, Zizwe A. Chase, Chan Kyaw, G. Tim Noe, Andrey Baydin, Fu Yang Tay, Jared Strait, Junyeob Sun, Junichiro Kono, Amit Argawal, and Thomas A. Searles
FTh4B.6 CLEO: QELS_Fundamental Science (CLEO_QELS) 2020

Broadband Absorption Engineering of Hyperbolic Metafilm Patterns

Dengxin Ji, Haomin Song, Xie Zeng, Haifeng Hu, Kai Liu, Nan Zhang, and Qiaoqiang Gan
FM1C.4 CLEO: QELS_Fundamental Science (CLEO_QELS) 2014

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