OPTICAL CONDUCTIVITY OF OXIDES

Author:

GERVAIS FRANCOIS1,TA PHUOC VINH1,POIROT NATHALIE1,COQUELET CEDRIC1,GRUENER GISELE1,LOBO RICARDO P. S. M.2

Affiliation:

1. Laboratory of Electrodynamics of Advance Materials, UMR 6157 CNRS/CEA, Faculty of Sciences and Techniques, Francois Rabelais University, 37200 Tours, France

2. Laboratoire de Physique du Solide, UPR5 CNRS, ESPCI Paris, France

Abstract

Optical conductivity spectra of conducting oxides including high-TC cuprates - compared to non-superconducting nickelates in particular - deduced from infrared reflectivity spectroscopy in polarized light and their doping and temperature dependence, are discussed with emphasis on the signatures of intrinsic inhomogeneities of charge carrier concentration. The model of disordered metal is shown to be compatible with the general loss of spectral weight in the optical conductivity upon decreasing frequency, instead of a maximum conductivity at zero frequency as found within a Drude description. In high-TC multilayer cuprates, the discussion focuses upon the c-axis response and the inhomogeneity of the electronic concentration related to the conducting planes alternating with insulating sheets. The onset of stripes that are intrinsic inhomogeneities of the charge carrier distribution is discussed in the example of nickelates.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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