Phase diagrams of singlet superconducting states with mixed symmetry
arXiv:1804.09513 · doi:10.1016/j.physc.2018.12.003
Abstract
The competition between the singlet superconducting states with - and d-wave symmetry of the order parameter is studied within a single-band model with nearest-neighbor attractive interaction. The zero- and finite-temperature ground state phase diagrams are constructed for different ratios between the nearest- and next-nearest-neighbor electron transfer integrals. The mixed pairing state is shown to form in the intermediate region between - and d-waves. The temperature phase transitions between the pure and the mixed pairing state are found.
14 pages, 11 figures
References in corpus (8)
- Heavily electron-doped electronic structure and isotropic superconducting gap in AxFe2Se2 (A=K,Cs)
- Quantum frustration in organic Mott insulators: from spin liquids to unconventional superconductors
- d-wave pairing from spin fluctuations in the KxFe{2-y}Se2 superconductors
- Pairing State with a time-reversal symmetry breaking in FeAs based superconductors
- Pairing symmetry of the one-band Hubbard model in the paramagnetic weak-coupling limit: a numerical RPA study
- Collective modes in superconductors with competing s- and d-wave interactions
- Ground state phase diagram of the repulsive fermionic Hubbard model on the square lattice from weak-coupling
- Superconducting phase diagram of the paramagnetic one-band Hubbard model
Cited by in corpus (4)
- Interplay of magnetism and superconductivity in 2D extended Hubbard model
- Thermal fluctuations in superconducting phases with chiral and symmetry on a triangular lattice
- Stability of Mixed-Symmetry Superconducting States with Broken Time-Reversal Symmetry against Lattice Distortions
- Mixed-symmetry superconductivity and the energy gap