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Pulse accumulation, radial heat conduction, and anisotropic thermal conductivity in pump-probe transient thermoreflectance

Review of Scientific Instruments · 2008 · Vol. 79(11) · pp. 114902–114902
Aaron J. SchmidtXiaohong ChenGang Chen

Abstract

The relationship between pulse accumulation and radial heat conduction in pump-probe transient thermoreflectance (TTR) is explored. The results illustrate how pulse accumulation allows TTR to probe two thermal length scales simultaneously. In addition, the conditions under which radial transport effects are important are described. An analytical solution for anisotropic heat flow in layered structures is given, and a method for measuring both cross-plane and in-plane thermal conductivities of thermally anisotropic thin films is described. As verification, the technique is used to extract the cross-plane and in-plane thermal conductivities of highly ordered pyrolytic graphite. Results are found to be in good agreement with literature values.

Thermal properties of materialsThermography and Photoacoustic TechniquesFire effects on concrete materialsThermal conductionMaterials scienceThermal conductivityAnisotropyPyrolytic carbonTransient (computer programming)Thermal diffusivityGraphiteHeat transferThermal

Funding

  • National Science Foundation
  • U.S. Department of Defense
  • University of Illinois at Urbana-Champaign
Citations
627
FWCI
9.23
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References
19
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References
Analysis of heat flow in layered structures for time-domain thermoreflectance
Review of Scientific Instruments · 2004 · 1,476 citations
Lattice Dynamics of Pyrolytic Graphite
Physical review. B, Solid state · 1972 · 740 citations
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Pulse accumulation, radial heat conduction, and anisotropic thermal conductivity in pump-probe transient thermoreflectance · Scinovex