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Axial oxygen-centered lattice instabilities in YBa2Cu3O7: An application of the analysis of extended x-ray-absorption fine structure in anharmonic systems (CROSBI ID 121851)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Mustre de Leon, Jose ; Conradson, S. D. ; Batistić, Ivo ; Bishop, Alan R. ; Raistrick, I. D. ; Aronson, M. C. ; Garzon, F. H. Axial oxygen-centered lattice instabilities in YBa2Cu3O7: An application of the analysis of extended x-ray-absorption fine structure in anharmonic systems // Physical review. B, Condensed matter, 45 (1992), 5; 2447-2457. doi: 10.1103/PhysRevB.45.2447

Podaci o odgovornosti

Mustre de Leon, Jose ; Conradson, S. D. ; Batistić, Ivo ; Bishop, Alan R. ; Raistrick, I. D. ; Aronson, M. C. ; Garzon, F. H.

engleski

Axial oxygen-centered lattice instabilities in YBa2Cu3O7: An application of the analysis of extended x-ray-absorption fine structure in anharmonic systems

Analysis of polarized copper K-edge extended X-ray- absorption fine-structure (EXAFS) measurements on YBa_2Cu_3O_7 for temperatures 10 K <= T_nom <= 105 K ndicates that the axial oxygen moves in a double-well potential which softens within a fluctuation region associated with the onset of superconductivity in this material. This fluctuation follows from the coupling between the phonons derived from this double-well potential and the superconducting order parameter. The advantages of EXAFS compared to crystallographic measurements in discerning these aspects of the local structure are discussed. Metrical parameters and the characteristics of the potential are determined by curve fits of the EXAFS. This method is based on the calculation of radial distribution functions from selected model potentials, the forms of which are determined along with the absorber-scatterer distance, scatterer type, and number, by optimization of fits of the experimental data with the EXAFS calculated from these parameters. Unlike perturbative treatments, this approach is ideally suited for highly anharmonic systems because the putative potential can be a very close approximation to the real one and it also offers the advantage of providing dynamical information not available through perturbative treatments.

high temperature superconductivity ; transition temperature ; K-edge extended X-ray-absorption fine-structure ; double-well potential

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Podaci o izdanju

45 (5)

1992.

2447-2457

objavljeno

0163-1829

1095-3795

10.1103/PhysRevB.45.2447

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Fizika

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