4.6 Article

Fluctuational electrodynamics of hyperbolic metamaterials

Journal

JOURNAL OF APPLIED PHYSICS
Volume 115, Issue 23, Pages -

Publisher

AIP Publishing
DOI: 10.1063/1.4883243

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Funding

  1. Helmholtz Alberta Initiative
  2. Alberta Innovates Technology Futures
  3. National Science and Engineering Research Council of Canada

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We give a detailed account of equilibrium and non-equilibrium fluctuational electrodynamics of hyperbolic metamaterials. We show the unifying aspects of two different approaches; one utilizes the second kind of fluctuation dissipation theorem and the other makes use of the scattering method. We analyze the near-field of hyperbolic media at finite temperatures and show that the lack of spatial coherence can be attributed to the multi-modal nature of super-Planckian thermal emission. We also adopt the analysis to phonon-polaritonic super-lattice metamaterials and describe the regimes suitable for experimental verification of our predicted effects. The results reveal that far-field thermal emission spectra are dominated by epsilon-near-zero and epsilon-near-pole responses as expected from Kirchoff's laws. Our work should aid both theorists and experimentalists to study complex media and engineer equilibrium and non-equilibrium fluctuations for applications in thermal photonics. (C) 2014 AIP Publishing LLC.

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