Band dependent inter-layer -electron hybridization in CeRhIn
arXiv:1801.07797 · doi:10.1103/PhysRevLett.120.066403
Abstract
A key issue in heavy fermion research is how subtle changes in the hybridization between the 4 (5) and conduction electrons can result in fundamentally different ground states. CeRhIn stands out as a particularly notable example: replacing Rh by either Co or Ir, located above or below Rh in the periodic table, antiferromagnetism gives way to superconductivity. In this photoemission study of CeRhIn, we demonstrate that the use of resonant ARPES with polarized light allows to extract detailed information on the 4 crystal field states and details on the 4 and conduction electron hybridization which together determine the ground state. We directly observe weakly dispersive Kondo resonances of -electrons and identify two of the three Ce crystal-electric-field levels and band-dependent hybridization, which signals that the hybridization occurs primarily between the Ce states in the CeIn layer and two more three-dimensional bands composed of the Rh and In orbitals in the RhIn layer. Our results allow to connect the properties observed at elevated temperatures with the unusual low-temperature properties of this enigmatic heavy fermion compound.
6 pages, 5 figures