A precursor state to unconventional superconductivity in CeIrIn5

Abstract

We present sensitive measurements of the Hall effect and magnetoresistance in CeIrIn5 down to temperatures of 50 mK and magnetic fields up to 15 T. The presence of a low temperature coherent Kondo state is established. Deviations from Kohler's rule and a quadratic temperature dependence of the cotangent of the Hall angle are reminiscent of properties observed in the high temperature superconducting cuprates. The most striking observation pertains to the presence of a precursor state--characterized by a change in the Hall mobility--that appears to precede the superconductivity in this material, in similarity to the pseudogap in the cuprate high Tc superconductors.

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