Vortex-lattice melting in two-dimensional superconducting networks and films
M. Franz, S. Teitel
DOI 10.1103/PhysRevB.51.6551 · Physical Review B
Active bibliographic source — not scientific approval
Bibliographic access preserves source history; it does not approve extracted materials or validate reported claims. Review warnings on each occurrence separately.
Abstract
We carry out an extensive Monte Carlo study of phase transitions in two-dimensional (2D) superconducting networks, in an applied magnetic field, for square and honeycomb geometries. We consider both systems with a dilute vortex density 1/q, and dense systems near full frustration with vortex density 1/2–1/q. The dilute case gives the continuum limit as q→∞, and serves as a model for a uniform superconducting film. For this dilute case, we find a transition temperature Tc∼1/q, at which the vortex lattice unpins from the network and forms a ‘‘floating solid’’ phase. At a higher temperature Tm, this floating solid melts into a vortex liquid. We analyze the transition at Tm according to the Kosterlitz-Thouless theory of dislocation mediated melting in 2D. While we find a discontinuous jump in the vortex shear modulus at Tm which is consistent with this theoy, we find (in opposition to this theory) that the transition is weakly first order, and we find no evidence for a hexatic liquid phase. For the case near full frustration, we find that the system can be described in terms of the density of defects in an otherwise fully frustrated vortex pattern. These dilute defects result in similar behavior as that found in the dilute vortex system, with pinned, floating, and liquid defect phases.
Source-reported materials — not catalogue approval
| Formula | Reported Tc (K) | Pressure (GPa) | Type |
|---|---|---|---|
| La2CuO4 Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | — | Pressure not reported | unknown |
Similar papers
Low-temperature vortex dynamics in twinned superconductors
similarity 0.97M. Cristina Marchetti & Valerii M. Vinokur
Source status unknown — claims are unverified
Quantum depinning of vortices in type-II superconductors
similarity 0.97Gianni Blatter et al.
Source status unknown — claims are unverified
Structure of an isolated vortex in an anisotropic type-II superconductor
similarity 0.96R. A. Klemm
Source status unknown — claims are unverified
Superconductivity in a strongly correlated anisotropic three-dimensional system
similarity 0.96A. N. Das et al.
Source status unknown — claims are unverified
Interplay between superconductivity and altermagnetism in disordered materials and heterostructures
similarity 0.96Rodrigo de las Heras et al.
Source status unknown — claims are unverified
Lattice-instability-enhanced high-temperature superconductivity for the perovskite-family oxides
similarity 0.96Mitsuo Kataoka
Source status unknown — claims are unverified