Onsager Loop-Transition and First Order Flux-Line Lattice Melting in High- Superconductors
arXiv:cond-mat/9705223 · doi:10.1103/PhysRevB.57.3123
Abstract
Monte-Carlo simulations in conjunction with finite-size scaling analysis are used to investigate the -phase diagram in uniaxial anisotropic high- superconductors, both in zero magnetic field and in intermediate magnetic fields for various mass-anisotropies. The model we consider is the uniformly frustrated anisotropic Villain Model. In zero magnetic field, and for all anisotropies considered, we find one single second order phase transition, mediated by an Onsager vortex-loop blowout. This is the superconductor-normal metal transition.A comparison with numerical simulations and a critical scaling analysis of the zero-field loop-transition yields the same exponent of the loop distribution function at the critical point. In the intermediate magnetic field regime, we find two anomalies in the specific heat. The first anomaly at a temperature is associated with the melting transition of the flux-line lattice. The second anomaly at a temperature is one where phase coherence along the field direction is destroyed. We argue that in the thermodynamic and continuum limit. Hence, there is no regime where the flux line lattice melts into a disentangled flux-line liquid. The loss of phase coherence parallel to the magnetic field in the sample is argued to be due to the proliferation of closed non-field induced vortex loops on the scale of the magnetic length in the problem, resulting in flux-line cutting and recombination. In the flux-line liquid phase, therefore, flux-lines appear no longer to be well defined entities. A finite-size scaling analysis of the delta function peak specific heat anomaly at the melting transition is used to extract the discontinuity of the entropy at the melting transition.This entropy discontinuity is found to increase rapidly with mass-anisotropy.
22 pages, 11 figures included, to be published in Phys. Rev. B, 57 xxx (1998)
Cited by in corpus (42)
- Phase Fluctuations and Pseudogap Phenomena
- Phase Fluctuations and Spectral Properties of Underdoped Cuprates
- Topological defects as relics of emergent continuous symmetry and Higgs condensation of disorder in ferroelectrics
- Tunneling conductance in - and d-wave superconductor-graphene junctions: Extended Blonder-Tinkham-Klapwijk formalism
- Topological phase-fluctuations, amplitude fluctuations, and criticality in extreme type-II superconductors
- Extreme Type-II Superconductors in a Magnetic Field: A Theory of Critical Fluctuations
- Phase transitions in a three dimensional lattice London superconductor: Metallic superfluid and charge-4e superconducting states
- Vortex Loop Phase Transitions in Liquid Helium, Cosmic Strings, and High-T_c Superconductors
- Phase-coherence and the boson-analogy of vortex liquids
- Phase Structure of d=2+1 Compact Lattice Gauge Theories and the Transition from Mott Insulator to Fractionalized Insulator
- Numerical study of vortex matter using the Bose model: First-order melting and entanglement
- Do Vortices Entangle?
- Evidence for a Two-stage Melting Transition of the Vortex Matter in Bi2Sr2Ca1Cu2O8+d Single Crystals obtained by Muon Spin Rotation
- Preemptive vortex-loop proliferation in multicomponent interacting Bose--Einstein condensates
- Goldstone-like phonon modes in a (111)-strained perovskite
- Disclination loop behavior near the nematic-isotropic transition
- Flux-line entanglement as the mechanism of melting transition in high-temperature superconductors in a magnetic field
- Vortices and the Ginzburg-Landau phase transition
- Phase Fluctuations and Single Fermion Spectral Density in 2D Systems with Attraction
- Hidden vortex lattices in a thermally paired superfluid
- Phase-transitions in isotropic extreme type-II superconductors
- Universal properties for linelike melting of the vortex lattice
- Stringlet Excitation Model of the Boson Peak
- Nonperturbative approach to the quantum Hall bilayer
- Theory of Decoupling in the Mixed Phase of Extremely Type-II Layered Superconductors
- Sharp k-space features in the order parameter within the interlayer pair-tunneling mechanism of high-T_c superconductivity
- Nonlinear Hydrodynamics of Disentangled Flux-Line Liquids
- Numerical studies of the phase diagram of layered type II superconductors in a magnetic field
- 3D XY scaling theory of the superconducting phase transition
- Continuous phase transition of a fully frustrated XY model in three dimensions
- Fluctuation effects in rotating Bose-Einstein condensates with broken and symmetries in the presence of intercomponent density-density interactions
- Viscoelasticity and Surface Tension at the Defect-Induced First-Order Melting Transition of a Vortex Lattice
- Superconducting Coherence and the Helicity Modulus in Vortex Line Models
- Effects of boundaries and density inhomogeneity on states of vortex matter in Bose--Einstein condensates at finite temperature
- Analysis of the loop length distribution for the negative weight percolation problem in dimensions d=2 through 6
- Entanglement in Dilute Flux Line Liquids
- Manipulating Metastability: Quenched Control of Topological Defects in Multiferroics
- Hydrodynamics of liquids of arbitrarily curved flux-lines and vortex loops
- Nucleation of Stable Superconductivity in YBCO-Films
- Unconventional criticality in -invariant loop-constrained Landau theory
- Splitting of the superconducting transition in the two weakly coupled 2D XY models
- Phase transitions and composite order in lattice London models