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Thermal Hyperbolic Metamaterials

We explore the near-field radiative thermal energy transfer properties of hyperbolic metamaterials. The presence of unique electromagnetic states in a broad bandwidth leads to super-planckian thermal energy transfer between metamaterials separated by a nano-gap. We consider practical phonon-polaritonic metamaterials for thermal engineering in the mid-infrared range and show that the effect exists in spite of the losses, absorption and finite unit cell size. For thermophotovoltaic energy conversion applications requiring energy transfer in the near-infrared range we introduce high temperature hyperbolic metamaterials based on plasmonic materials with a high melting point. Our work paves the way for practical high temperature radiative thermal energy transfer applications of hyperbolic metamaterials.

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Co-authorshipAuthorshipAuthorshipTopic signalTopic signalTopic signalRelated contextWThermal Hyperbolic Metamaterialspreprint / 2013AYu GuoResearcherAZubin JacobResearcherTcond-mat.mtrl-sci11957 worksTcond-mat.mes-hall9901 worksTphysics.optics7109 works
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Thermal Hyperbolic Metamaterials

preprint / 2013

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