Empirical correlation between superconducting transition temperatures T/sub c/ and the Hall coefficients in amorphous superconductors
Journal Article
·
· Chin. Phys.; (United States)
OSTI ID:6458141
An empirical correlation has been found between the superconducting transition temperatures T/sub c/ 's and the Hall coefficients R/sub H/ 's of amorphous states in numerous nontransition metals and alloys. The same relation also exists between T/sub c/ 's of amorphous states and the Hall coefficients R/sub HL/ 's of corresponding liquid metals. From these empirical correlations we conclude that many disordered metals, including beryllium, thallium, zinc, lead, and mercury, appear to be not really amorphous.
- Research Organization:
- Institute of Plasma Physics, Academia Sinica
- OSTI ID:
- 6458141
- Journal Information:
- Chin. Phys.; (United States), Journal Name: Chin. Phys.; (United States) Vol. 1:1; ISSN CHPHD
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360104* -- Metals & Alloys-- Physical Properties
656102 -- Solid State Physics-- Superconductivity-- Acoustic
Electronic
Magnetic
Optical
& Thermal Phenomena-- (-1987)
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
ALKALINE EARTH METALS
AMORPHOUS STATE
BERYLLIUM
CORRELATIONS
DATA
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
ELEMENTS
EXPERIMENTAL DATA
FLUIDS
HALL EFFECT
INFORMATION
LEAD
LIQUID METALS
LIQUIDS
MERCURY
METALS
NUMERICAL DATA
PHYSICAL PROPERTIES
SUPERCONDUCTIVITY
THALLIUM
THERMODYNAMIC PROPERTIES
TRANSITION TEMPERATURE
ZINC
360104* -- Metals & Alloys-- Physical Properties
656102 -- Solid State Physics-- Superconductivity-- Acoustic
Electronic
Magnetic
Optical
& Thermal Phenomena-- (-1987)
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
ALKALINE EARTH METALS
AMORPHOUS STATE
BERYLLIUM
CORRELATIONS
DATA
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
ELEMENTS
EXPERIMENTAL DATA
FLUIDS
HALL EFFECT
INFORMATION
LEAD
LIQUID METALS
LIQUIDS
MERCURY
METALS
NUMERICAL DATA
PHYSICAL PROPERTIES
SUPERCONDUCTIVITY
THALLIUM
THERMODYNAMIC PROPERTIES
TRANSITION TEMPERATURE
ZINC