Physical Review Letters · 2013 · 103 citations · 98 references
EngineeringTopological Quantum StateSuperconductivityQuantum MaterialsMagnetic Topological InsulatorQuantum SciencePhysicsTopological MaterialBose-einstein CondensationPhase DiagramQuantum MagnetismSpintronicsNatural SciencesTopological InsulatorApplied PhysicsCondensed Matter PhysicsGeneric Bosonic ModelDisordered Quantum SystemMeissner CurrentsBosonic Mott Insulator
We introduce a generic bosonic model exemplifying that (spin) Meissner currents can persist in insulating phases of matter. We consider two species of interacting bosons on a lattice. Our model exhibits separation of charge (total density) and spin (relative density): the charge sector is gapped in a bosonic Mott insulator phase with total density one, while the spin sector remains superfluid due to interspecies conversion. Coupling the spin sector to the gauge fields yields a spin Meissner effect reflecting the long-range spin superfluid coherence. We investigate the resulting phase diagram and describe other possible spin phases of matter in the Mott regime possessing chiral currents as well as a spin-density wave phase. The model presented here is realizable in Josephson junction arrays and in cold atom experiments.
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J. Bardeen, Leon N. Cooper, J. R. Schrieffer · Physical Review · 1957 · 12.8K citations · Full text
Superconducting Material, Engineering, Critical Currents +18
Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
Markus Greiner, Olaf Mandel, Tilman Esslinger et al. · Nature · 2002 · 5.7K citations · Full text