Critical behavior of Ginzburg-Landau model coupled to massless Dirac fermions
arXiv:cond-mat/0112030 · doi:10.1103/PhysRevB.66.012504
Abstract
We point out interesting effects of additional massless Dirac fermions with N_F colors upon the critical behavior of the Ginzburg-Landau model. For increasing N_F, the model is driven into the type II regime of superconductivity. The critical exponents are given as a function of N_F.
RevTex4, 4 pages, 1 figure; author information and latest update to this paper at http://www.physik.fu-berlin.de/~kleinert/institution.html; version 2: new references and comments on chiral symmetry breaking added
References in corpus (2)
Cited by in corpus (13)
- Quantum criticality of U(1) gauge theories with fermionic and bosonic matter in two spatial dimensions
- Field- and temperature induced topological phase transitions in the three-dimensional -component London superconductor
- Quantum superconducting criticality in graphene and topological insulators
- Kosterlitz-Thouless-like deconfinement mechanism in the 2+1 dimensional Abelian Higgs model
- Deconfined quantum criticality driven by Dirac fermions in SU(2) antiferromagnets
- Antiferromagnetic metal to heavy-fermion metal quantum phase transition in the Kondo lattice model: A strong coupling approach
- Bosonization duality in 2+1 dimensions and critical current correlation functions in Chern-Simons Abelian Higgs model
- Bandwidth-control vs. doping-control Mott transition in the Hubbard model
- Role of spinon and spinon singlet pair excitations on phase transitions in superconductors
- QED_3 theory of underdoped high temperature superconductors II: the quantum critical point
- Topology-driven deconfined quantum criticality in magnetic bilayers
- Universal properties of the U(1) current at deconfined quantum critical points: comparison with predictions from gauge/gravity duality
- Critical behavior of a supersymmetric extension of the Ginzburg-Landau model