Publication | Closed Access
Cold atoms in a two-dimensional triangular optical lattice as an artificial frustrated system
33
Citations
48
References
2010
Year
Quantum LiquidQuantum ScienceQuantum OpticQuantum Lattice SystemTriangular Optical LatticeEngineeringPhysicsApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemAtomic PhysicsCold AtomsUltracold AtomBose-einstein CondensationArtificial Frustrated SystemFermi Liquid
We investigate the strongly correlated effect of cold atoms in a triangular optical lattice using the dynamical cluster approximation combined with the continuous-time quantum Monte Carlo method. When the interaction increases, the Fermi surface evolves from a circular ring into a flat plane, and the system transitions from a Fermi liquid into a Mott insulator. The transition between the Fermi liquid and a pseudogap shows a reentrant behavior due to the Kondo effect. We give an experimental protocol to observe these phenomena in future experiments by varying the lattice depth and the atomic interaction via the Feshbach resonance.
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