Physical Review A · 2010 · 117 citations · 23 references
Quantum ScienceExperimental SchemeEngineeringQuantum ComputingPhysicsSquare LatticeQuantum Lattice SystemApplied PhysicsCondensed Matter PhysicsQuantum MaterialsAtomic PhysicsCold AtomsDisordered Quantum SystemUltracold AtomTopological Quantum StateTopological PhaseTopological Phase TransitionDouble-well Lattices
We propose an experimental scheme to realize the quantum anomalous Hall effect in an anisotropic square optical lattice which can be generated from available experimental setups of double-well lattices with minor modifications. A periodic gauge potential induced by atom-light interaction is introduced to give a Peierls phase for the nearest-neighbor site hopping. The quantized anomalous Hall conductivity is investigated by calculating the Chern number as well as the chiral gapless edge states of our system. Furthermore, we show in detail the feasability for its experimental detection through light Bragg scattering of the edge and bulk states with which one can determine the topological phase transition from usual insulating phase to quantum anomalous Hall phase.
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Many-body physics with ultracold gases
Immanuel Bloch, Jean Dalibard, W. Zwerger · Reviews of Modern Physics · 2008 · 7.9K citations · Full text
Quantized Hall Conductance in a Two-Dimensional Periodic Potential
D. J. Thouless, Mahito Kohmoto, M. P. Nightingale et al. · Physical Review Letters · 1982 · 6.7K citations · Full text