Strength, deformation, and the fcc–hcp phase transition in condensed Kr and Xe to the 100 GPa pressure range
Abstract
The rare gas solids exhibit systematic differences in crystal structure, phase transition conditions, bond strength, and other physical properties. The physical properties of heavy rare gas solids krypton and xenon are modified by the martensitic phase transition from face-centered cubic to hexagonal close packed structure over a broad pressure range. Crystal structure, strength, and plastic deformation of krypton and xenon have been investigated at 300 K using compression in the diamond-anvil cell with synchrotron angle-dispersive x-ray diffraction and complementary ruby fluorescence spectroscopy for Xe. Stacking faults indicative of the fcc–hcp phase transition are observed at pressures at and above 1.23 ± 0.05 and 1.9 ± 0.6 GPa in Kr and Xe, respectively. The transition remains incomplete in both solids to pressures greater than 100 GPa. Strength determined from stress measurements in Pt and ruby standards at pressures up to 111 GPa and complemented by observations of strain and texture measurements obtained by x-ray diffraction in the radial geometry to 100 GPa indicates similar or higher strength than Ar at all conditions, with significant stiffening at 15–20 GPa. Radial diffraction data reveal the persistence of broad highly textured fcc diffraction lines to 101 GPa in Xe, suggesting that the axial measurements may underestimate the metastable persistence of the fcc phase due to biased sampling of hcp crystallites resulting from preferred crystallite orientation. Kr and Xe are compared with He, Ne, and Ar for a systematic understanding of physical properties and phase equilibria of rare gas solids.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (8)
B. L. Brugman
Department of Earth and Environmental Science, Michigan State University 1 , East Lansing, Michigan 48824,
M. Lv
Department of Earth and Environmental Science, Michigan State University 1 , East Lansing, Michigan 48824,
J. Liu
E. Greenberg
Center for Advanced Radiation Sources, University of Chicago 2 , Chicago, Illinois 60437,
V. B. Prakapenka
D. Y. Popov
HPCAT, X-ray Science Division, Argonne National Laboratory 3 , Argonne, Illinois 60439,
C. Park
HPCAT, X-ray Science Division, Argonne National Laboratory 3 , Argonne, Illinois 60439,
S. M. Dorfman
Department of Earth and Environmental Science, Michigan State University 1 , East Lansing, Michigan 48824,