Exotic 4f Correlated Electronic States of Ferromagnetic Kondo Lattice Compounds ReRhGe (Re=Ce, Ho, Er, Tm)
arXiv:2406.18965
Abstract
CeRhGe stands out as the first stoichiometric metallic compound with a ferromagnetic quantum critical point, thereby garnering significant attention. Ferromagnetic Kondo lattice compounds ReRhGe (Re=Ce, Ho, Er, Tm) have been systematically investigated with density functional theory incorporating Coulomb interaction U and spin-orbital coupling. We determined the magnetic easy axis of CeRhGe is within the ab plane, which is in agreement with previous magnetization measurements conducted under external magnetic field and muSR experiments. We also predicted the magnetic easy axes for the other three compounds. For TmRhGe, the magnetic easy axis aligns along the c axis, thus preserving the rotational symmetry of the c axis. Especially, there are triply degenerate nodal points along the direction in the band structure including spin-orbital coupling. A possible localized to itinerant crossover is revealed as electrons increase from CeRhGe to TmRhGe. Specifically, the electrons of TmRhGe contribute to the formation of a large Fermi surface, indicating their participation in the conduction process. Conversely, the electrons in HoRhGe, ErRhGe and CeRhGe remain localized, which result in smaller Fermi surfaces for these compounds. These theoretical investigations on electronic structure and magnetic properties shed deep insight into the unique nature of electrons, providing critical predictions for subsequent experimental studies.