Thermal metamaterial: Difference between revisions

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By structuring material on the nanoscale in particular ways one can influence the flow of phonons and thermal photons and thus the materials heat conductivity properties.
By structuring material on the nanoscale in particular ways one can influence the flow of phonons and thermal photons in gaps and thus the materials heat conductivity properties.


Electronic properties also can play a big role in heat conduction (especially in well electrically conducting metals). They also depend on the nano-structuring of the material but in addition the elements choosen to be used in the base material can play a much bigger role.
Electronic properties also can play a big role in heat conduction (especially in well electrically conducting metals).
They also depend on the nano-structuring of the material but in addition the elements chosen to be used in the base material can play a much bigger role.
This may make electrically conductive materials harder to analyze.
This may make electrically conductive materials harder to analyze.



Revision as of 06:57, 16 July 2017

This article is a stub. It needs to be expanded.

By structuring material on the nanoscale in particular ways one can influence the flow of phonons and thermal photons in gaps and thus the materials heat conductivity properties.

Electronic properties also can play a big role in heat conduction (especially in well electrically conducting metals). They also depend on the nano-structuring of the material but in addition the elements chosen to be used in the base material can play a much bigger role. This may make electrically conductive materials harder to analyze.

  • Emission of long wavelength photons can be suppressed -- converting heat to light

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