Field-induced coexistence of s++ and s± superconducting states in dirty multiband superconductors
Julien Garaud, Alberto Corticelli, Mihail Silaev, Egor Babaev
DOI 10.1103/PhysRevB.97.054520 · 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
In multiband systems, such as iron-based superconductors, the superconducting states with locking and antilocking of the interband phase differences are usually considered as mutually exclusive. For example, a dirty two-band system with interband impurity scattering undergoes a sharp crossover between the s± state (which favors phase antilocking) and the s++ state (which favors phase locking). We discuss here that the situation can be much more complex in the presence of an external field or superconducting currents. In an external applied magnetic field, dirty two-band superconductors do not feature a sharp s±→s++ crossover but rather a washed-out crossover to a finite region in the parameter space where both s± and s++ states can coexist for example as a lattice or a microemulsion of inclusions of different states. The current-carrying regions such as the regions near vortex cores can exhibit an s± state while it is the s++ state that is favored in the bulk. This coexistence of both states can even be realized in the Meissner state at the domain's boundaries featuring Meissner currents. We demonstrate that there is a magnetic-field-driven crossover between the pure s± and the s++ states.
Similar papers
Field-induced coexistence of and superconducting states in dirty multiband superconductors
similarity 0.93Julien Garaud et al. · 2017 · arXiv:1712.09273
Source status unknown — claims are unverified
Complex state induced by impurities in multiband superconductors
similarity 0.92Valentin Stanev & Alexei E. Koshelev
Source status unknown — claims are unverified
Unexpected impact of magnetic disorder on multiband superconductivity
similarity 0.90M. M. Korshunov et al.
Source status unknown — claims are unverified
Quantum interference between impurities: Creating novel many-body states in s-wave superconductors
similarity 0.89Dirk K. Morr & Nikolaos A. Stavropoulos
Source status unknown — claims are unverified
Disorder-induced transition between s± and s++ states in two-band superconductors
similarity 0.89D. V. Efremov et al.
Source status unknown — claims are unverified
Topological states of multiband superconductors with interband pairing
similarity 0.88Maximilian F. Holst et al.
Source status unknown — claims are unverified