The valence state of Yb ion in YblnAu2 compound at high pressure determined by x-ray diffraction and x-ray absorption near edge structure measurements

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Abstract

X-ray diffraction patterns and LIII-edge x-ray absorption near edge structure (XANES) spectra of YbInAu2 and LuInAu2 compounds have been measured at high pressure and room temperature using a diamond anvil cell and a synchrotron radiation at SPring-8. YbInAu2 is more compressible at pressures lower than 4 GPa than above it; the evaluated bulk modulus by Birch-type equation of state is 54.7 GPa which is one-half of that of the LuInAu2 (112.5 GPa). The mean valence v̄ of Yb ion in YbInAu2 determined by the XANES measurement is an increasing function of pressure: 2.71(2) at normal pressure and 2.94(2) at 10 GPa. The rate of increase in v̄ with pressure is two times larger at pressures below 4 GPa than that above 4 GPa. However, the v̄ is described by a linear increasing function of the lattice compression: n̄=v̄ 0+2.9|ΔV/V0| where v̄0 is 2.71. The extrapolation to the trivalent state gives the critical pressure of 13 GPa. © 2006 American Institute of Physics.

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Fuse, A., Nakamoto, G., Ishimatsu, N., & Kurisu, M. (2006). The valence state of Yb ion in YblnAu2 compound at high pressure determined by x-ray diffraction and x-ray absorption near edge structure measurements. Journal of Applied Physics, 100(4). https://doi.org/10.1063/1.2335388

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