Crystal field states of Kondo lattice heavy fermions CeRuSn3 and CeRhSn3
V. K. Anand, D. T. Adroja, D. Britz, A. M. Strydom, J. W. Taylor, and, W. Kockelmann

TL;DR
This study uses inelastic neutron scattering to determine the crystal field states of CeRuSn3 and CeRhSn3, revealing their electronic configurations, Kondo temperatures, and ground state symmetries in these heavy fermion compounds.
Contribution
First detailed crystal field level schemes for CeRuSn3 and CeRhSn3 using neutron scattering, linking electronic states to Kondo physics in these cubic heavy fermion systems.
Findings
Ce ions are in Ce3+ state at both sites.
Kondo temperatures are approximately 3.1 K and 4.6 K for CeRuSn3 and CeRhSn3.
Ground states are a quartet (cubic) and a doublet (tetragonal).
Abstract
Inelastic neutron scattering experiments have been carried out to determine the crystal field states of the Kondo lattice heavy fermions CeRuSn3 and CeRhSn3. Both the compounds crystallize in LaRuSn3-type cubic structure (space group Pm-3n) in which the Ce atoms occupy two distinct crystallographic sites with cubic (m-3) and tetragonal (-4m.2) point symmetries. The INS data of CeRuSn3 reveal the presence of a broad excitation centered around 6-8 meV which is accounted by a model based on crystal electric field (CEF) excitations. On the other hand, the INS data of isostructural CeRhSn3 reveal three CEF excitations around 7.0, 12.2 and 37.2 meV. The neutron intensity sum rule indicates that the Ce ions at both cubic and tetragonal Ce sites are in Ce3+ state in both CeRuSn3 and CeRhSn3. The CEF level schemes for both the compounds are deduced. We estimate the Kondo temperature T_K = 3.1(2)…
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