Publication | Open Access
Commensurate Two-Component Bosons in an Optical Lattice: Ground State Phase Diagram
187
Citations
13
References
2004
Year
Quantum ScienceQuantum Lattice SystemEngineeringPhysicsMonte CarloApplied PhysicsCondensed Matter PhysicsQuantum MaterialsAtomic PhysicsSuperconductivityQuantum Field TheoryGround State DiagramDisordered Quantum SystemOptical LatticeTopological PhaseBose-einstein CondensationCommensurate Two-component BosonsStatistical Field Theory
Two sorts of bosons in an optical lattice at commensurate filling factors can form five stable super-fluid and insulating ground states with rich and nontrivial phase diagram. The structure of the ground state diagram is established by mapping a d-dimensional quantum system onto a (d+1)-dimensional classical loop-current model and Monte Carlo (MC) simulations of the latter. Surprisingly, the quantum phase diagram features, besides second-order lines, first-order transitions and two multicritical points. We explain why first-order transitions are generic for models with pairing interactions using microscopic and mean-field (MF) arguments. In some cases, the MC results strongly deviate from the MF predictions.
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