Theory for Decoupling in High-T_c Superconductors from an Analysis of the Layered XY Model with Frustration
arXiv:cond-mat/0006380 · doi:10.1016/S0921-4534(99)00698-X
Abstract
The nature of decoupling in the mixed phase of extremely type-II layered superconductors is studied theoretically through a duality transformation of the layered XY model with frustration. In the limit of weak coupling, we generally find that the Josephson effect is absent if and only if the phase correlations within isolated layers are short range. In the case specific to uniform frustration, we notably identify a decoupled pancake vortex liquid phase that is bounded by first-order and second-order decoupling lines in the magnetic field vs. temperature plane. These transitions potentially account for the flux-lattice melting and for the flux-lattice depinning that is observed in clean high-temperature superconductors.
11 pgs. of Plain TeX, 1 postscript fig., based on a talk given at the VORTEX Euroconference held in Heraklion, Crete, Sept. 1999
References in corpus (4)
Cited by in corpus (5)
- Vortices and Dissipation in a Bilayer Thin Film Superconductor
- Theory of Decoupling in the Mixed Phase of Extremely Type-II Layered Superconductors
- Collective pinning of the vortex lattice by columnar defects in layered superconductors
- Optimum pinning of the vortex lattice in extremely type-II layered superconductors
- Sublimated Decoupling of the Vortex Lattice in Extremely Type-II Layered Superconductors