Strong Coupling between Antiferromagnetic and Superconducting Order Parameters in CeRhIn5 Studied by In-NQR Spectroscopy

Abstract

We report on a novel pressure (P)-induced evolution of magnetism and superconductivity (SC) in a helical magnet CeRhIn5 with an incommensurate wave vector Qi=(1/2,1/2,0.297) through the 115In nuclear quadrupole resonance (NQR) measurements under P. Systematic measurements of the 115In-NQR spectrum reveal that the commensurate antiferromagnetism (AFM) with Qc=(1/2,1/2,1/2) is realized above Pm 1.7 GPa. An important finding is that the size of SC gap and Tc increase as the magnitude of the AFM moment decreases in the P region, where SC uniformly coexists with the commensurate AFM. This result provides evidence of strong coupling between the commensurate AFM order parameter (OP) and SC OP.

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