Manipulating thermal emission with spatially static fluctuating fields in arbitrarily shaped epsilon-near-zero bodies

Date

2018

Authors

Director

Publisher

National Academy of Sciences
Acceso abierto / Sarbide irekia
Artículo / Artikulua
Versión publicada / Argitaratu den bertsioa

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Impacto

Abstract

The control and manipulation of thermal fields is a key scientific andtechnological challenge, usually addressed with nanophotonic struc-tures with a carefully designed geometry. Here, we theoreticallyinvestigate a different strategybased on epsilon-near-zero (ENZ)media. We demonstrate that thermal emission from ENZ bodies ischaracterized by the excitation of spatially static fluctuating fields,which can be resonantly enhanced with the addition of dielectricparticles. The“spatially static”character of these temporally dynamicfields leads to enhanced spatial coherence on the surface of the body,resulting in directive thermal emission. By contrast with other ap-proaches, this property is intrinsic to ENZ media and it is not tied toits geometry. This point is illustrated with effects such as geometry-invariant resonant emission, beamforming by boundary deforma-tion, and independence with respect to the position of internalparticles. We numerically investigate a practical implementationbased on a silicon carbide body containing a germanium rod.

Description

Keywords

Thermal emission, ENZ, Zero-index, Metamaterial, Fluctuational electrodynamics

Department

Ingeniería Eléctrica y Electrónica / Ingeniaritza Elektrikoa eta Elektronikoa

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item.page.cita

Liberal, I., Engheta, N. (2018) Manipulating thermal emission with spatially static fluctuating fields in arbitrarily shaped epsilon-near-zero bodies. Proceedings of the National Academy of Sciences of the United States of America, 115(12), 2878-2883. https://doi.org/10.1073/pnas.1718264115.

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