Kondo interaction in FeTe and its potential role in the magnetic order

Author:

Kim Younsik,Kim Min-Seok,Kim Dongwook,Kim Minjae,Kim MinsooORCID,Cheng Cheng-MawORCID,Choi JoonyoungORCID,Jung Saegyeol,Lu DonghuiORCID,Kim Jong Hyuk,Cho Soohyun,Song Dongjoon,Oh DongjinORCID,Yu LiORCID,Choi Young JaiORCID,Kim Hyeong-Do,Han Jung Hoon,Jo Younjung,Shim Ji HoonORCID,Seo JungpilORCID,Huh SoonsangORCID,Kim ChangyoungORCID

Abstract

AbstractFinding d-electron heavy fermion states has been an important topic as the diversity in d-electron materials can lead to many exotic Kondo effect-related phenomena or new states of matter such as correlation-driven topological Kondo insulator. Yet, obtaining direct spectroscopic evidence for a d-electron heavy fermion system has been elusive to date. Here, we report the observation of Kondo lattice behavior in an antiferromagnetic metal, FeTe, via angle-resolved photoemission spectroscopy, scanning tunneling spectroscopy and transport property measurements. The Kondo lattice behavior is represented by the emergence of a sharp quasiparticle and Fano-type tunneling spectra at low temperatures. The transport property measurements confirm the low-temperature Fermi liquid behavior and reveal successive coherent-incoherent crossover upon increasing temperature. We interpret the Kondo lattice behavior as a result of hybridization between localized Fe 3dxy and itinerant Te 5pz orbitals. Our observations strongly suggest unusual cooperation between Kondo lattice behavior and long-range magnetic order.

Funder

Institute for Basic Science

National Research Foundation of Korea

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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