Lei Liu 1,2Yan Bi 1,*
Author Affiliations
Abstract
1 National Key Laboratory of Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering, Mianyang, 621900, China
2 Department of Earth Science, Uppsala University, Uppsala, SE, 75236, Sweden
The equations of state (EOSs) of materials are the cornerstone of condensed matter physics, material science, and geophysics. However, acquiring an accurate EOS in diamond anvil cell (DAC) experiments continues to prove problematic because the current lack of an accurate pressure scale with clarified sources of uncertainty makes it difficult to determine a precise pressure value at high pressure, and nonhydrostaticity affects both the volume and pressure determination. This study will discuss the advantages and drawbacks of various pressure scales, and propose an absolute pressure scale and correction methods for the effects of non-hydrostaticity. At the end of this paper, we analyze the accuracy of the determined EOS in the DAC experiments we can achieve to date.
Equation of state Equation of state Pressure scale Pressure scale Nonhydrostaticity effect Nonhydrostaticity effect Diamond anvil cell Diamond anvil cell 
Matter and Radiation at Extremes
2016, 1(4): 224

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