Coexistence of local magnetism and superconductivity in the heavy-fermion CeRhAs revealed by SR studies
arXiv:2406.16575 · doi:10.1103/PhysRevB.111.115134
Abstract
The superconducting (SC) state ( = 0.3 K) of the heavy-fermion compound CeRhAs, which undergoes an unusual field-induced transition to another high-field SC state, emerges from an unknown ordered state below = 0.55 K. While an electronic multipolar order of itinerant Ce-4 states was proposed to account for the phase, the exact order parameter has not been known to date. Here, we report on muon spin relaxation (SR) studies of the magnetic and SC properties in CeRhAs single crystals at low temperatures. We reveal a magnetic origin of the order by identifying a spontaneous internal field below = 0.55 K. Furthermore, we find evidence of a microscopic coexistence of local magnetism with bulk superconductivity. Our findings open the possibility that the phase involves both dipole and higher order Ce-4 moment degrees of freedom and accounts for the unusual non-Fermi liquid behavior.
7 pages, 4 figures, and supplemental material
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