Utilization of a high correlated cluster model for interpretation of electronic spectroscopic data for the high-temperature superconductors. Interim technical report
Technical Report
·
OSTI ID:6367877
The author has consistently interpreted electron spectroscopic data for the high-temperature superconductors utilizing a highly-correlated CuOn cluster model, and an extended Hubbard Hamiltonian which includes the inter-site Cu-O and O-O Upp parameters. The data indicate much larger Up and Upp values than found in other typical highly conductive metals. Previously unassigned features in the data are now assigned within the model.
- Research Organization:
- George Washington Univ., Washington, DC (USA). Dept. of Chemistry
- OSTI ID:
- 6367877
- Report Number(s):
- AD-A-202080/8/XAB; TR-47
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
COPPER OXIDES
CUPRATES
SUPERCONDUCTIVITY
AUGER ELECTRON SPECTROSCOPY
ELECTRONS
METALS
OXIDES
PROGRESS REPORT
SPECTROSCOPY
SUPERCONDUCTORS
TRANSITION TEMPERATURE
CHALCOGENIDES
COPPER COMPOUNDS
DOCUMENT TYPES
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
ELECTRON SPECTROSCOPY
ELEMENTARY PARTICLES
ELEMENTS
FERMIONS
LEPTONS
OXYGEN COMPOUNDS
PHYSICAL PROPERTIES
THERMODYNAMIC PROPERTIES
TRANSITION ELEMENT COMPOUNDS
360204* - Ceramics
Cermets
& Refractories- Physical Properties
656100 - Condensed Matter Physics- Superconductivity
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
COPPER OXIDES
CUPRATES
SUPERCONDUCTIVITY
AUGER ELECTRON SPECTROSCOPY
ELECTRONS
METALS
OXIDES
PROGRESS REPORT
SPECTROSCOPY
SUPERCONDUCTORS
TRANSITION TEMPERATURE
CHALCOGENIDES
COPPER COMPOUNDS
DOCUMENT TYPES
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
ELECTRON SPECTROSCOPY
ELEMENTARY PARTICLES
ELEMENTS
FERMIONS
LEPTONS
OXYGEN COMPOUNDS
PHYSICAL PROPERTIES
THERMODYNAMIC PROPERTIES
TRANSITION ELEMENT COMPOUNDS
360204* - Ceramics
Cermets
& Refractories- Physical Properties
656100 - Condensed Matter Physics- Superconductivity