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  • Cite this article:

    Yuekun Niu, Yu Ni, Jianli Wang, Leiming Chen, Ye Xing, Yun Song, Shiping Feng. Quantitative determination of the critical points of Mott metal–insulator transition in strongly correlated systemsJ. Chin. Phys. B, 2024, 33(1): 017102.
    Yuekun Niu, Yu Ni, Jianli Wang, Leiming Chen, Ye Xing, Yun Song, Shiping Feng. Quantitative determination of the critical points of Mott metal–insulator transition in strongly correlated systemsJ. Chin. Phys. B, 2024, 33(1): 017102.
  • Quantitative determination of the critical points of Mott metal–insulator transition in strongly correlated systems

    • Mottness is at the heart of the essential physics in a strongly correlated system as many novel quantum phenomena occur in the metallic phase near the Mott metal–insulator transition. We investigate the Mott transition in a Hubbard model by using the dynamical mean-field theory and introduce the local quantum state fidelity to depict the Mott metal–insulator transition. The local quantum state fidelity provides a convenient approach to determining the critical point of the Mott transition. Additionally, it presents a consistent description of the two distinct forms of the Mott transition points.
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