Review on the Scientific and Technological Breakthroughs in Thermal Emission Engineering.

ACS Appl Opt Mater

Department of Electrical, Electronic and Communications Engineering, Institute of Smart Cities (ISC), Universidad Pública de Navarra (UPNA), 31006 Pamplona, Spain.

Published: June 2024

AI Article Synopsis

  • Thermal radiation is a key process in heat transfer and can be understood through its properties as a quantum phenomenon and electromagnetic wave propagation.
  • Unlike conventional light sources, it is broadband, omnidirectional, and unpolarized, making it difficult to control.
  • Recent advances in nanophotonics have created new materials and techniques to manipulate thermal radiation, leading to a growing field of thermal emission engineering with significant research breakthroughs and potential applications.

Article Abstract

The emission of thermal radiation is a physical process of fundamental and technological interest. From different approaches, thermal radiation can be regarded as one of the basic mechanisms of heat transfer, as a fundamental quantum phenomenon of photon production, or as the propagation of electromagnetic waves. However, unlike light emanating from conventional photonic sources, such as lasers or antennas, thermal radiation is characterized for being broadband, omnidirectional, and unpolarized. Due to these features, ultimately tied to its inherently incoherent nature, taming thermal radiation constitutes a challenging issue. Latest advances in the field of nanophotonics have led to a whole set of artificial platforms, ranging from spatially structured materials and, much more recently, to time-modulated media, offering promising avenues for enhancing the control and manipulation of electromagnetic waves, from far- to near-field regimes. Given the ongoing parallelism between the fields of nanophotonics and thermal emission, these recent developments have been harnessed to deal with radiative thermal processes, thereby forming the current basis of thermal emission engineering. In this review, we survey some of the main breakthroughs carried out in this burgeoning research field, from fundamental aspects to theoretical limits, the emergence of effects and phenomena, practical applications, challenges, and future prospects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11217951PMC
http://dx.doi.org/10.1021/acsaom.4c00030DOI Listing

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