paper

Interplay of itinerant magnetism and reentrant spin-glass behavior in FeCr

arXiv:2007.10644 · doi:10.1103/PhysRevMaterials.6.044407

Abstract

When suppressing the itinerant antiferromagnetism in chromium by doping with the isostructual itinerant ferromagnet iron, a dome of spin-glass behavior emerges around a putative quantum critical point at an iron concentration . Here, we report a comprehensive investigation of polycrystalline samples of FeCr in the range using x-ray powder diffraction, magnetization, ac susceptibility, and neutron depolarization measurements, complemented by specific heat and electrical resistivity data for . Besides antiferromagnetic () and ferromagnetic regimes (), we identify a dome of reentrant spin-glass behavior at low temperatures for that is preceded by a precursor phenomenon. Neutron depolarization indicates an increase of the size of ferromagnetic clusters with increasing and the Mydosh parameter , inferred from the ac susceptibility, implies a crossover from cluster-glass to superparamagnetic behavior. Taken together, these findings consistently identify FeCr as an itinerant-electron system that permits to study the evolution of spin-glass behavior of gradually varying character in unchanged crystalline environment.