Hierarchies of length-scale based typology in anisotropic U(1)s-wave multiband superconductors
Thomas Winyard, Mihail Silaev, Egor Babaev
DOI 10.1103/PhysRevB.99.064509 · 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
Since Ginzburg and Landau's seminal work in 1950, superconducting states have been classified by the hierarchy of the fundamental length scales of the theory, the magnetic-field penetration lengths and coherence lengths. In the simplest single-component case they form a dimensionless ratio κ. The model was generalized by Ginzburg for anisotropic materials in 1952. In this paper we expand the above length-scale analysis to anisotropic multicomponent superconductors that can have multiple coherence lengths as well as multiple magnetic-field penetration lengths, leading to unconventional length-scale hierarchies. We demonstrate that the anisotropies in multiband superconductors lead to new regimes with various mixed hierarchies in different directions. For example, a regime is possible, where for a field applied in a certain direction coherence lengths are smaller than the magnetic-field penetration lengths in one of the perpendicular directions, whereas the penetration lengths are larger in the other direction. Focusing on a model of a clean anisotropic multiband s-wave supercocoductors we show exampes of a new regime where vortex cores overlap in one direction, resulting in attractive core-core interaction, while in the orthogonal direction the magnetic-field penetration length exceeds the coherence lengths, leading to dominance of repulsive current-current interaction, resulting in an unconventional magnetic response.
Similar papers
Hierarchies of Length Scale Based Typology in Anisotropic Multiband Superconductor
similarity 0.96Thomas Winyard et al. · 2018 · arXiv:1801.09274
Source status unknown — claims are unverified
Length scales, collective modes, and type-1.5 regimes in three-band superconductors
similarity 0.90Johan Carlström et al.
Source status unknown — claims are unverified
Latent superconductivity at parallel interfaces in a superlattice dominated by another collective quantum phase
similarity 0.87V. N. Moura et al.
Source status unknown — claims are unverified
Coherence length and quantum geometry in a dilute flat-band superconductor
similarity 0.87M. Iskin
Source status unknown — claims are unverified
Magnetic penetration depth and vortex structure in anharmonic superconducting junctions with an interfacial pair breaking
similarity 0.86Yu. S. Barash
Source status unknown — claims are unverified
Holographic superconductors with various condensates
similarity 0.86Gary T. Horowitz & Matthew M. Roberts
Source status unknown — claims are unverified