Vortex glass transitions in disordered three-dimensional XY models: Simulations for several different sets of parameters
arXiv:cond-mat/0505707 · doi:10.1103/PhysRevB.72.144525
Abstract
The anisotropic frustrated 3D XY model with strong disorder in the coupling constants is studied as a model of a disordered superconductor in an applied magnetic field. Simulations with the exchange Monte Carlo method are performed for frustrations f=1/5 and f=1/4, corresponding to two different values of the magnetic field along the z direction. The anisotropy is also varied. The determination of the helicity modulus from twist histograms is discussed in some detail and the helicity modulus is used in finite size scaling analyses of the vortex glass transition. The general picture is that the behavior in [Phys. Rev. Lett. 91, 077002 (2003)] is confirmed. For strong (e.g. isotropic) coupling in the z direction the helicity modulus fails to scale and it is argued that this is due to a too small effective randomness of such systems for the accessible system sizes.
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- Disorder Driven Melting of the Vortex Line Lattice
- Vortex glass transition in a random pinning model
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Cited by in corpus (7)
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- Phase diagram of vortex matter in layered superconductors with random point pinning
- Phase diagram of randomly pinned vortex matter in layered superconductors: dependence on the details of the point pinning
- Unified Phase Diagram for the Three-Dimensional XY Model of a Point Disordered Type-II Superconductor
- Driven spin wave modes in XY ferromagnet: Nonequilibrium phase transition
- Vortex Line Ordering in the Driven Three-Dimensional Vortex Glass