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High pressure equation of state studies using methanol-ethanol-water and argon as pressure media
Authors:BK Godwal  S Speziale  J Yan
Institution:a Department of Earth and Planetary Sciences, University of California Berkeley, CA 94720, USA
b GeoForschungsZentrum Potsdam, Division 4.1, Telegrafenberg, 9 24473 Potsdam, Germany
c Advanced Light Source, Lawrence Berkeley National Laboratory,1, Cyclotron Road, Berkeley, CA 94720, USA
d Department of Astronomy, University of California Berkeley, CA 94720-4767, USA
Abstract:We have measured the equation of state of the intermetallic compound AuIn2 up to 20 GPa and Cd0.8Hg0.2 up to 50 GPa using methanol-ethanol-water solution or argon as pressure media. In the experiments performed with argon as pressure medium, we minimized non-hydrostatic conditions by thermally annealing the sample. We present data revealing compressibility anomalies in AuIn2 at 2.7 GPa and in Cd0.8Hg0.2 near 8, 18 and 34 GPa with methanol-ethanol-water and argon. At pressures above 5 GPa the P-V data for AuIn2 and Cd0.8Hg0.2 from experiments preformed with argon as a pressure medium start deviating from those using methanol-ethanol-water, and the equation of state based on experiments in argon is stiffer compared with that in methanol-ethanol-water. This behavior is consistent with the relative merits of the two pressure transmitting media as documented in the literature. We also provide a brief summary of the results of electronic structure calculations that associate these anomalies with electronic topological transitions.
Keywords:A  Alloy  C  High pressure  C  X-ray diffraction  D  Equation of state  D  Electronic structure
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