paper

Direct Evidence for the Existence of Heavy Quasiparticles in the Magnetically Ordered Phase of CeRhIn

arXiv:1810.10837 · doi:10.7566/JPSJ.88.014706

Abstract

It is a long-standing important issue in heavy fermion physics whether -electrons are itinerant or localized when the magnetic order occurs. Here we report the {\it in situ} scanning tunneling microscopy observation of the electronic structure in epitaxial thin films of CeRhIn, a prototypical heavy fermion compound with antiferromagnetic ground state. The conductance spectra above the Néel temperature clearly resolve the energy gap due to the hybridization between local 4 electrons and conduction bands as well as the crystal electric field excitations. These structures persist even below . Moreover, an additional dip in the conductance spectra develops due to the antiferromagnetic order. These results provide direct evidence for the presence of itinerant heavy -electrons participating in the Fermi surface even in the magnetically ordered state of CeRhIn.