2014Physical Review BRequires access

Near-complete violation of detailed balance in thermal radiation

Linxiao Zhu, Shanhui Fan

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Abstract

We introduce general principles for achieving maximal violation of detailed balance in thermal radiation. We validate these principles by direct numerical calculations, based on fluctuational electrodynamics, on thermal emitters constructed from magneto-optical photonic crystals. Such a capability to maximally violate the detailed balance provides different opportunities for the design of thermal absorbers and emitters.

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What this paper is about

We introduce general principles for achieving maximal violation of detailed balance in thermal radiation. We validate these principles by direct numerical calculations, based on fluctuational electrodynamics, on thermal emitters constructed from magneto-optical photonic crystals. Such a capability to maximally violate the detailed balance provides different opportunities for the design of thermal absorbers and emitters.

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Available abstract

We introduce general principles for achieving maximal violation of detailed balance in thermal radiation. We validate these principles by direct numerical calculations, based on fluctuational electrodynamics, on thermal emitters constructed from magneto-optical photonic crystals. Such a capability to maximally violate the detailed balance provides different opportunities for the design of thermal absorbers and emitters.

Key concepts: Thermal radiation, Balance (ability), Thermal, Detailed balance, Radiation, Physics, Photonics, Classical electromagnetism

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