Near-field radiative heat transfer in many-body systems¶
Biehs, S. -., Messina, R., Venkataram, P. S., Rodriguez, A. W., Cuevas, J. C., & Ben-Abdallah, P. (2021). Near-field radiative heat transfer in many-body systems. Reviews of Modern Physics.
Cited by¶
1 citation across 1 artifact.
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Domain-specific¶
- Near-Field Radiative Heat Transfer
- Polder and Van Hove's foundational calculation treated two half-spaces at different temperatures across a vacuum gap and predicted a strong increase in radiative transfer as the gap narrowed. The modern field extends that mechanism to particles, finite bodies, structured materials, and many-body systems.
This sourceBiehs, R. Messina, P. S. Venkataram, A. W. Rodriguez, J. C. Cuevas, and P. Ben-Abdallah, “Near-field radiative heat transfer in many-body systems,” Reviews of Modern Physics 93, 025009 (2021). doi:10.1103/RevModPhys.93.025009; author preprint.
- Polder and Van Hove's foundational calculation treated two half-spaces at different temperatures across a vacuum gap and predicted a strong increase in radiative transfer as the gap narrowed. The modern field extends that mechanism to particles, finite bodies, structured materials, and many-body systems.
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Registry ID ref:02c15234d419 · see in the full table