Competing superconducting instabilities in the one-dimensional p-band degenerate cold fermionic system
arXiv:1505.06715 · doi:10.1103/PhysRevB.92.075140
Abstract
The zero-temperature phase diagram of -orbital two-component fermionic system loaded into a one-dimensional optical lattice is mapped out by means of analytical and numerical techniques. It is shown that the -band model away from half-filling hosts various competing superconducting phases for attractive and repulsive interactions. At quarter filling, we analyze the possible formation of incompressible Mott phases and in particular for repulsive interactions, we find the occurrence of a Mott transition with the formation of fully gapped bond-ordering waves.
published version
References in corpus (9)
- A lattice of double wells for manipulating pairs of cold atoms
- Ultracold Fermi Gases with Emergent SU(N) Symmetry
- Quantum phases of bosons in double-well optical lattices
- Spin 3/2 fermions with attractive interactions in a one-dimensional optical lattice: phase diagrams, entanglement entropy, and the effect of the trap
- Confinement vs Deconfinement of Cooper Pairs in One-Dimensional Spin-3/2 Fermionic Cold Atoms
- Phase diagrams of one-dimensional half-filled two-orbital SU(N) cold fermions systems
- Competing Orders in One-Dimensional Half-Integer Fermionic Cold Atoms: A Conformal Field Theory Approach
- Competing orders in the generalized Hund chain model at half-filling
- Orbital currents and charge density waves in a generalized Hubbard ladder