Bosonic Integer Quantum Hall effect in an interacting lattice model
Bosonic Integer Quantum Hall effect in an interacting lattice model
We study a bosonic model with correlated hopping on a honeycomb lattice, and show that its ground state is a bosonic integer quantum Hall (BIQH) phase, a prominent example of a symmetry protected topological (SPT) phase. By using the infinite density matrix renormalization group method, we establish the existence of the BIQH phase by providing clear numerical evidence: (i) a quantized Hall conductance with $|\sigma_{xy}|= 2$ (ii) two counter propagating gapless edge modes. Our simple model is an example of a novel class of systems that can stabilize SPT phases protected by a continuous symmetry on lattices and opens up new possibilities for the experimental realization of these exotic phases.
R. Moessner、Frank Pollmann、Subhro Bhattacharjee、Yin-Chen He
10.1103/PhysRevLett.115.116803
物理学
R. Moessner,Frank Pollmann,Subhro Bhattacharjee,Yin-Chen He.Bosonic Integer Quantum Hall effect in an interacting lattice model[EB/OL].(2015-06-04)[2025-08-02].https://arxiv.org/abs/1506.01645.点此复制
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