Theory of antiferromagnetic superconductors
Creators
- 1. Department of Physics, Kyoto University, Kyoto, Japan
Description
In this paper a theory is presented of antiferromagnetic superconductors in which a spin-density wave (SDW) ordering with a wave vector Q may coexist with superconductivity. The effect of the antiferromagnetic molecular field h/sub Q/(T) on the Cooper pairing is studied, and it is shown that, below the magnetic transition temperature T/sub N/' the Bardeen-Cooper-Schruffer coupling parameter is reduced by a factor of [1-constsuch thatub Q/(T)epsilon/sub F/] due to the formation of energy gaps of SDW on the Fermi surface along Q and this reduction can explain the anomaly in the upper critical field H/sub c/2 just below T/sub N/ as observed in RMo6S8 (R=Gd, Tb, and Dy). Taking account of both the spin-orbit scattering and spin-fluctuation effect near T/sub N/ in addition to the effect of h/sub Q/(T), a theoretical calculation of the superconducting transition temperature T/sub c/ and H/sub c/2(T) is performed. Detailed quantitative comparisons between theory and experiments on H/sub c/2(T) are made with fairly good accord for the above three compounds. Some speculation is given to discuss the remaining descrepancies between theory and experiments and certain phenomena not yet explained by the theory
Additional details
Publishing Information
- Journal Title
- Phys. Rev., B: Condens. Matter
- Journal Volume
- 22
- Journal Issue
- 5
- Series
- Phys. Rev., B: Condens. Matter.
- Journal Page Range
- 2307-2317
- ISSN
- 0163-1829
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 12577423
- Subject category
- S36: MATERIALS SCIENCE; S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
- Descriptors DEI
- ANTIFERROMAGNETISM; COOPER PAIRS; CRITICAL FIELD; DYSPROSIUM; ENERGY GAP; FERMI LEVEL; MOLYBDENUM SULFIDES; SPIN WAVES; SUPERCONDUCTIVITY; TRANSITION TEMPERATURE
- Descriptors DEC
- CHALCOGENIDES; ELECTRIC CONDUCTIVITY; ELECTRICAL PROPERTIES; ELEMENTS; ENERGY LEVELS; MAGNETIC FIELDS; MAGNETISM; METALS; MOLYBDENUM COMPOUNDS; PHYSICAL PROPERTIES; RARE EARTHS; SULFIDES; SULFUR COMPOUNDS; THERMODYNAMIC PROPERTIES; TRANSITION ELEMENT COMPOUNDS