JOURNAL ARTICLE

Thermal Conductivity of Helium and Argon at High Pressure and High Temperature

Wen‐Pin HsiehYi‐Chi TsaoChun‐Hung Lin

Year: 2022 Journal:   Materials Vol: 15 (19)Pages: 6681-6681   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

Helium (He) and argon (Ar) are important rare gases and pressure media used in diamond-anvil cell (DAC) experiments. Their thermal conductivity at high pressure–temperature (P-T) conditions is a crucial parameter for modeling heat conduction and temperature distribution within a DAC. Here we report the thermal conductivity of He and Ar over a wide range of high P-T conditions using ultrafast time-domain thermoreflectance coupled with an externally heated DAC. We find that at room temperature the thermal conductivity of liquid and solid He shows a pressure dependence of P0.86 and P0.72, respectively; upon heating the liquid, He at 10.2 GPa follows a T0.45 dependence. By contrast, the thermal conductivity of solid Ar at room temperature has a pressure dependence of P1.25, while a T−1.37 dependence is observed for solid Ar at 19 GPa. Our results not only provide crucial bases for further investigation into the physical mechanisms of heat transport in He and Ar under extremes, but also substantially improve the accuracy of modeling the temperature profile within a DAC loaded with He or Ar. The P-T dependences of the thermal conductivity of He are important to better model and constrain the structural and thermal evolution of gas giant planets containing He.

Keywords:
Thermal conductivity Argon Helium Thermal conduction Materials science Thermodynamics Atmospheric temperature range Thermal Conductivity Analytical Chemistry (journal) Chemistry Composite material Physical chemistry Physics

Metrics

6
Cited By
1.11
FWCI (Field Weighted Citation Impact)
56
Refs
0.73
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

High-pressure geophysics and materials
Physical Sciences →  Earth and Planetary Sciences →  Geophysics
Thermal properties of materials
Physical Sciences →  Materials Science →  Materials Chemistry
Quantum, superfluid, helium dynamics
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

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