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DMRG studies for 1-D random Hubbard chain close to the half-filling

Okumura, Masahiko   ; Yamada, Susumu  ; Machida, Masahiko  

We numerically study the repulsive Hubbard model with random potential by using the density-matrix renormalization group method. When a few holes are doped to the half-filling, i.e., in slightly doped Mott insulator, we clearly find that "Mott plateaus" and "hole localized valleys" well-separately form in strong on-site repulsive $$U/t$$ and strong randomness. These nano-scale structures are non-trivial ones created due to strong correlation incorporating randomness. We suggest that these structures qualitatively capture phenomena seen in heavily under-doped High-$$T$$$$_{rm c}$$ superconductors, while cold atomic Fermi gases loaded on an optical lattice can experimentally confirm the structures under a well controllable manner.

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Category:Chemistry, Multidisciplinary

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