Superfluid gap formation in a fermionic optical lattice with spin imbalanced populations
arXiv:1007.3307 · doi:10.1088/1742-6596/273/1/012116
Abstract
We investigate the attractive Hubbard model in infinite spatial dimensions at quarter filling. By combining dynamical mean-field theory with continuous-time quantum Monte Carlo simulations in the Nambu formalism, we directly deal with the superfluid phase in the population imbalanced system. We discuss the low energy properties in the polarized superfluid state and the pseudogap behavior in the vicinity of the critical temperature.
4 pages, 1 figure, To appear in J. Phys.: Conf. Ser. for SCES2010
References in corpus (23)
- Observation of Bose-Einstein Condensation of Molecules
- Hybridization expansion impurity solver: General formulation and application to Kondo lattice and two-orbital models
- Continuous-time auxiliary field Monte Carlo for quantum impurity models
- High-spin to low-spin and orbital polarization transitions in multiorbital Mott systems
- Efficient DMFT-simulation of the Holstein-Hubbard Model
- Spectroscopic insensitivity to cold collisions in a two-state mixture of fermions
- Diagrammatic Determinantal methods: projective schemes and applications to the Hubbard-Holstein model
- Density-Matrix Renormalization Group Study of Trapped Imbalanced Fermi Condensates
- Metal-Insulator phase diagram and orbital selectivity in 3-orbital models with rotationally invariant Hund coupling
- Finite temperature phase diagram of a polarized Fermi gas in an optical lattice
- Continuous-Time Quantum Monte Carlo Method for the Coqblin-Schrieffer Model
- A weak coupling CTQMC study of the single impurity and periodic Anderson models with s-wave superconducting baths
- Evolution of a Large Fermi Surface in the Kondo Lattice
- Dynamical mean-field theory and numerical renormalization group study of superconductivity in the attractive Hubbard model
- Luther-Emery Phase and Atomic-Density Waves in a Trapped Fermion Gas
- Supersolid state of ultracold fermions in an optical lattice
- Polarized superfluidity in the attractive Hubbard model with population imbalance
- Supersolids in confined fermions on one-dimensional optical lattices
- Supersolid state in fermionic optical lattice systems
- Polarized Superfluidity in the imbalanced attractive Hubbard model
- Quasiparticle excitations and dynamic susceptibilities in the BCS-BEC crossover
- Correlation Effects on Atom Density Profiles of 1-D and 2-D Polarized Atomic-Fermi-Gas Loaded on Optical Lattice
- Spatially-modulated Superfluid States in Fermionic Optical Ladder Systems with Repulsive Interactions