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Quantum Phase Transition and Local Entanglement in Extended Hubbard Model on Anisotropic Triangular Lattices

Quantum Phase Transition and Local Entanglement in Extended Hubbard Model on Anisotropic Triangular Lattices
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摘要 Using a mean-field theory based upon Hartree–Fock approximation, we theoretically investigate the competition between the metallic conductivity, spin order and charge order phases in a two-dimensional half-filled extended Hubbard model on anisotropic triangular lattice. Bond order, double occupancy, spin and charge structure factor are calculated, and the phase diagram of the extended Hubbard model is presented. It is found that the interplay of strong interaction and geometric frustration leads to exotic phases, the charge fluctuation is enhanced and three kinds of charge orders appear with the introduction of the nearest-neighbor interaction. Moreover, for different frustrations, it is also found that the antiferromagnetic insulating phase and nonmagnetic insulating phase are rapidly suppressed, and eventually disappeared as the ratio between the nearest-neighbor interaction and on-site interaction increases. This indicates that spin order is also sensitive to the nearest-neighbor interaction. Finally, the single-site entanglement is calculated and it is found that a clear discontinuous of the single-site entanglement appears at the critical points of the phase transition.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第11期555-562,共8页 理论物理通讯(英文版)
基金 Supported by National Natural Science Foundation of China under Grant Nos.11274255,11475027 and 11305132 Specialized Research Fund for the Doctoral Program of Higher Education of China under Grant No.20136203110001 Technology of Northwest Normal University,China under Grants No.NWNU-LKQN-11-26
关键词 extended Hubbard model phase transition local entanglement Hubbard模型 各向异性 三角晶格 Hartree-Fock近似 纠缠 相变 三角形 强相互作用
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