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Normal state c-axis resistivity of high T_c cuprate superconductors

arXiv:cond-mat/9704242 · doi:10.1142/S0217984997000438

Abstract

It is shown that a strong intraplanar incoherent scattering can effectively block the interplanar coherent tunneling between the weakly coupled planes of the highly anisotropic but clean (intrinsic) materials such as the optimally doped high-T_c layered cuprate superconductors. The calculated normal-state C-axis resistivity ρ_c(T) then follows the metal-like temperature dependence of the ab-plane resistivity ρ_{ab}(T) at high temperatures. At low enough temperatures, however, ρ_c(T) exhibits a non-metal like upturn even as ρ_{ab}(T) remains metallic. Moreover, in the metallic regime, ρ_c(T) is not limited by the maximum metallic resistivity of Mott-Ioffe-Regel. This correlation between the intrinsic ρ_c(T) and ρ_{ab}(T) is observed in the normal state of the high-T_c stoichiometric cuprates.

Mod. Phys. Lett B 1997, in print