Unified order-disorder vortex phase transition in high-Tc superconductors
arXiv:cond-mat/0201024 · doi:10.1103/PhysRevB.65.100513
Abstract
The diversity of vortex melting and solid-solid transition lines measured in different high-T superconductors is explained, postulating a unified order-disorder phase transition driven by both thermally- and disorder-induced fluctuations. The temperature dependence of the transition line and the nature of the disordered phase (solid, liquid, or pinned liquid) are determined by the relative contributions of these fluctuations and by the pinning mechanism. By varying the pinning mechanism and the pinning strength one obtains a spectrum of monotonic and non-monotonic transition lines similar to those measured in BiSrCaCuO, YBaCuO, NdCeCuO, BiPbSrCaCuO and (LaSr)CuO
To be published in Phys. Rev. B Rapid Comm
References in corpus (3)
Cited by in corpus (13)
- The Ginzburg-Landau Theory of Type II superconductors in magnetic field
- Peak effect in single crystal MgB superconductor for -axis
- Equilibrium First-Order Melting and Second-Order Glass Transitions of the Vortex Matter in BiSrCaCuO
- Effect of pinning on the vortex-lattice melting line in type-II superconductors
- Theory of the vortex matter transformations in high Tc superconductor YBCO
- Interplay of Anisotropy and Disorder in the Doping-Dependent Melting and Glass Transitions of Vortices in BiSrCaCuO
- Dynamics of transient disordered vortex states in BSCCO
- Defect induced melting of vortices in high- superconductors: A model based on continuum elasticity theory
- Phase Diagram of Vortices in High-Tc Superconductors from Lattice Defect Model with Pinning
- Unified Phase Diagram for the Three-Dimensional XY Model of a Point Disordered Type-II Superconductor
- Visualizing a dilute vortex liquid to solid phase transition in a Bi2Sr2CaCu2O8 single crystal
- Remarkable change of tunneling conductance in YBCO films in fields up to 32.4T
- Doping Dependence of Vortex Regimes in YPrBaCuO Single Crystals