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Many-body near-field radiative heat transfer: Methods, functionalities and applications

  • Jinlin Song
  • , Qiang Cheng
  • , Bo Zhang
  • , Lu Lu
  • , Xinping Zhou
  • , Zixue Luo
  • , Run Hu

Research output: Contribution to journalReview articlepeer-review

77 Scopus citations

Abstract

Near-field radiative heat transfer (NFRHT) governed by evanescent waves, provides a platform to thoroughly understand the transport behavior of nonradiative photons, and also has great potential in high-efficiency energy harvesting and thermal management at the nanoscale. It is more usual in nature that objects participate in heat transfer process in many-body form rather than the frequently-considered two-body scenarios, and the inborn mutual interactions among objects are important to be understood and utilized for practical applications. The last decade has witnessed considerable achievements on many-body NFRHT, ranging from the establishment of different calculation methods to various unprecedented heat transport phenomena that are distinct from two-body systems. In this invited review, we introduce concisely the basic physics of NFRHT, lay out various theoretical methods to deal with many-body NFRHT, and highlight unique functionalities realized in many-body systems and the resulting applications. At last, the key challenges and opportunities of many-body NFRHT in terms of fundamental physics, experimental validations, and potential applications are outlined and discussed.

Original languageEnglish
Article number036501
JournalReports on Progress in Physics
Volume84
Issue number3
DOIs
StatePublished - Mar 2021
Externally publishedYes

Keywords

  • many-body system
  • near-field radiative heat transfer
  • theoretical method
  • thermal functionality

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