paper

Magnetism of PdNi alloys near the critical concentration for ferromagnetism

arXiv:1402.4532 · doi:10.1103/PhysRevB.89.064418

Abstract

We report results of a muon spin rotation and relaxation (SR) study of dilute PdNi alloys, with emphasis on Ni concentrations 0.0243 and 0.025. These are close to the critical value for the onset of ferromagnetic long-range order (LRO), which is a candidate for a quantum critical point. The 2.43 and 2.5 at.% Ni alloys exhibit similar SR properties. Both samples are fully magnetic, with average muon local fields 2.0 and 3.8 mT and Curie temperatures 1.0 and 2.03 K for 2.43 and 2.5 at.% Ni, respectively, at . The temperature dependence of suggests ordering of Ni spin clusters rather than isolated spins. Just above a two-phase region is found with separate volume fractions of quasistatic short-range order (SRO) and paramagnetism. The SRO fraction decreases to zero with increasing temperature a few kelvin above . This mixture of SRO and paramagnetism is consistent with the notion of an inhomogeneous alloy with Ni clustering. The measured values of extrapolate to = 0.0236 0.0027. The dynamic muon spin relaxation in the vicinity of differs for the two samples: a relaxation-rate maximum at is observed for = 0.0243, reminiscent of critical slowing down, whereas for 0.025 no dynamic relaxation is observed within the SR time window. The data suggest a mean-field-like transition in this alloy.

15 pages, 15 figures, to be published in Phys. Rev. B

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