Local lattice structure change inPr Ni O 3 across the metal-insulator transition: X-ray absorption near-edge structure spectroscopy andab initiocalculations
Author(s) -
M. Acosta-Alejandro,
J. Mustre de León,
M. Medarde,
Ph. Lacorre,
K. Konder,
P. A. Montano
Publication year - 2008
Publication title -
physical review b
Language(s) - English
Resource type - Journals
eISSN - 1538-4489
pISSN - 1098-0121
DOI - 10.1103/physrevb.77.085107
Subject(s) - monoclinic crystal system , xanes , orthorhombic crystal system , lattice (music) , materials science , crystallography , spectral line , local symmetry , physics , phase transition , condensed matter physics , crystal structure , chemistry , quantum mechanics , acoustics
X-ray absorption near edge structure XANES measurements at the Ni K edge of PrNiO3 across the metal insulator transition show that a change in the local lattice structure accompanies such transition. Theoretical calculations of the XANES show that the observed features of the spectra are consistent with the orthorhombic structure, reported by neutron diffraction, in the metallic phase. However, for the insulating phase, a change in the local symmetry, consistent with a monoclinic structure, is required to reproduce the spectra. This local symmetry change yields to two nickel sites with different local environment and implies a strong electronlattice interaction at the local level. This claim is also supported by the observation of a 16 O- 18 O isotopic shift in the temperature at which the XANES exhibits the change attributed to the switching of the local symmetry from orthorhombic to monoclinic.
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