Superconductivity and magnetism in rare earth transition metal borides
Conference
·
· AIP Conference Proceedings (American Institute of Physics); (United States)
OSTI ID:7292950
- Department of Physics and Institute for Pure and Applied Physical Sciences, University of California, San Diego, La Jolla, California 92093 (United States)
Rare earth (R)--transition metal (T) borides provide a unique opportunity for studying superconductivity and magnetism, and effects that arise from the interplay of these phenomena. Several examples of ternary and pseudoternary RRh{sub 4}B{sub 4} systems are discussed.
- DOE Contract Number:
- FG03-86ER45230
- OSTI ID:
- 7292950
- Report Number(s):
- CONF-900870-; CODEN: APCPC; TRN: 92-027245
- Journal Information:
- AIP Conference Proceedings (American Institute of Physics); (United States), Vol. 231:1; Conference: 10. international symposium on borons, borides and related compounds, Albuquerque, NM (United States), 27-30 Aug 1990; ISSN 0094-243X
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
BORON COMPOUNDS
MAGNETISM
SUPERCONDUCTIVITY
RARE EARTH COMPOUNDS
ANTIFERROMAGNETISM
CRITICAL TEMPERATURE
FERROMAGNETISM
KONDO EFFECT
MAGNETIC SUSCEPTIBILITY
TEMPERATURE DEPENDENCE
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
MAGNETIC PROPERTIES
PHYSICAL PROPERTIES
THERMODYNAMIC PROPERTIES
TRANSITION TEMPERATURE
360207* - Ceramics
Cermets
& Refractories- Superconducting Properties- (1992-)
360204 - Ceramics
Cermets
& Refractories- Physical Properties
BORON COMPOUNDS
MAGNETISM
SUPERCONDUCTIVITY
RARE EARTH COMPOUNDS
ANTIFERROMAGNETISM
CRITICAL TEMPERATURE
FERROMAGNETISM
KONDO EFFECT
MAGNETIC SUSCEPTIBILITY
TEMPERATURE DEPENDENCE
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
MAGNETIC PROPERTIES
PHYSICAL PROPERTIES
THERMODYNAMIC PROPERTIES
TRANSITION TEMPERATURE
360207* - Ceramics
Cermets
& Refractories- Superconducting Properties- (1992-)
360204 - Ceramics
Cermets
& Refractories- Physical Properties