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Ground State Properties of the Two-Dimensional t-J Model

Masanori Kohno

cond-mat.str-elarXiv:cond-mat/9610081

Abstract

The two-dimensional t-J model in the ground state is investigated by the power Lanczos method. The pairing-pairing correlation function for dx2-y2-wave symmetry is enhanced in the realistic parameter regime for high-Tc superconductors. The charge susceptibility χc shows divergent behavior as χcδ-1 near half-filling for the doping concentration δ, indicating that the value of the dynamical exponent z is four under the assumption of hyperscaling. The peak height of the spin structure factor Smax(Q) also behaves as Smax(Q) δ-1 near half-filling, which leads to the divergence of the antiferromagnetic correlation length ξm as ξm δ-1/2. The boundary of phase separation is estimated on the basis of the Maxwell construction. Numerical results are compared with experimental features observed in high-Tc cuprates.

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