Electronic structure of La/sub 4/BaCu/sub 5/O/sub 13-//sub x/
Although La/sub 4/BaCu/sub 5/O/sub 13-//sub x/ is metallic and chemically and structurally similar to known high-T/sub c/ copper-oxide superconductors, it is not superconducting above 5 K, at least for the observed values of x slightly above and below 0. In order to explore possible reasons why this material is not a high-T/sub c/ superconductor, we carried out detailed energy-band calculations. Even though the Cu-O network of La/sub 4/BaCu/sub 5/O/sub 13-//sub x/ may be regarded as an array of one-dimensional (1D) strands, we find that the interstrand coupling is actually sufficiently strong to make the band structure more nearly 3D than 1D in the neighborhood of the Fermi level. Since the band structures of known high-T/sub c/ copper-oxide superconductors have features which are distinctly 1D and/or 2D, the absence of superconductivity in La/sub 4/BaCu/sub 5/O/sub 13-//sub x/ might be due to the predominantly 3D band structure of samples studied so far, for which xnot =0. Our studies suggest that nested 1D bands separated by a reduced wave vector can be introduced on the Fermi surface by using samples with x = 0. If low dimensionality is indeed a significant factor, there is a chance that stoichiometric La/sub 4/BaCu/sub 5/O/sub 13/ could also be a high-T/sub c/ superconductor.
- Research Organization:
- IBM Almaden Research Center, 650 Harry Road, San Jose, California 95120-6099
- OSTI ID:
- 5680171
- Journal Information:
- Phys. Rev. B: Condens. Matter; (United States), Vol. 37:4
- Country of Publication:
- United States
- Language:
- English
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75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
BARIUM OXIDES
BAND THEORY
SUPERCONDUCTIVITY
COPPER OXIDES
LANTHANUM OXIDES
CRYSTAL STRUCTURE
ELECTRONIC STRUCTURE
PEROVSKITES
ALKALINE EARTH METAL COMPOUNDS
BARIUM COMPOUNDS
CHALCOGENIDES
COPPER COMPOUNDS
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
LANTHANUM COMPOUNDS
OXIDES
OXYGEN COMPOUNDS
PHYSICAL PROPERTIES
RARE EARTH COMPOUNDS
TRANSITION ELEMENT COMPOUNDS
360204* - Ceramics
Cermets
& Refractories- Physical Properties
656100 - Condensed Matter Physics- Superconductivity