Ferrimagnetism in EuFe4As12 revealed by 153Eu NMR and 75As NQR measurements
arXiv:2007.02983 · doi:10.1103/PhysRevB.102.014431
Abstract
Filled skutterudite compound EuFeAs shows the highest magnetic ordering temperature of = 154 K among Eu-based skutterudite compounds, but its magnetic ground state has not been determined yet. Here, we performed Eu nuclear magnetic resonance (NMR) and As nuclear quadrupole resonance (NQR) measurements on EuFeAs to reveal its magnetic ground state as well as the physical properties from a microscopic point of view. From the temperature and magnetic field dependence of Eu NMR spectrum in the magnetically ordered state, we found that the Eu ions are in Eu state with a nearly 7 corresponding to = 7/2 spins. Combined with the magnetization measurements which show the reduced saturation moments of 4.5 /f.u., we determined the ground magnetic structure in EuFeAs to be ferrimagnetic where the Eu 4 and the Fe 3 ordered moments are ferromagnetically aligned in each sublattice but the moments between the sublattices are antiferromagnetically aligned. We also found the local distortion at the Eu site from the cubic symmetry in the magnetically ordered state. The relationship between the rattling motion of Eu atoms and the local symmetry of the Eu ions is discussed. From the As NQR nuclear spin-lattice relaxation time measurements as well as Eu NMR measurements, we found that the 4 electrons of the Eu ions are well described by the local moment picture in both the magnetic and paramagnetic metallic states.
10 pages, 5 figures, accepted for publication in Phys. Rev. B
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