Anisotropic effect of Cd and Hg doping on Pauli limited superconductor CeCoIn5

Abstract

We investigated the effect of Cd and Hg doping on the first order superconducting (SC) transition and the high field-low temperature SC state of CeCoIn5 by measuring the specific heat of CeCo(In 1-xCd x)5 with x=0.0011, 0.0022 and 0.0033 and CeCo(In 1-xHg x)5 with x=0.00016, 0.00032, and 0.00048 at temperatures down to 0.1 K and fields up to 14 T. Cd substitution rapidly suppresses the cross-over temperature T 0, where the superconducting transition changes from second to first order, to T=0 K with x=0.0022 for H [100], while it remains roughly constant up to x=0.0033 for H [001]. The associated anomaly of the proposed FFLO state in Hg-doped samples is washed out by x=0.00048, while remaining at the same temperature, indicating high sensitivity of that state to impurities. We interpret these results as supporting the non-magnetic, possibly FFLO, origin of the high field - low temperature state in CeCoIn5.

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