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  • Letter

Interfacial electron-phonon coupling and quantum confinement in ultrathin Yb films on graphite

Yi Wu1,2,*, Wenhao Zhang1,*, Yuan Fang1,2, Shuai Lu3, Li Wang3, Peng Li1,2, Zhongzheng Wu1,2, Zhiguang Xiao1,2, Chao Cao4 et al.

Xiaoxiong Wang5, Fang-Sen Li6, Yi Yin1,7,†, Tai-Chang Chiang8, and Yang Liu1,2,7,‡

  • 1Zhejiang Province Key Laboratory of Quantum Technology and Device, Department of Physics, Zhejiang University, Hangzhou 310058, China
  • 2Center for Correlated Matter, Zhejiang University, Hangzhou 310058, China
  • 3Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), CAS, Suzhou 215123, China
  • 4Department of Physics, Hangzhou Normal University, Hangzhou 311121, China
  • 5College of Science, Nanjing University of Science and Technology, Nanjing 210094, China
  • 6Vacuum Interconnected Nanotech Workstation (Nano-X), Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), CAS, Suzhou 215123, China
  • 7Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210093, China
  • 8Department of Physics and Frederick Seitz Materials Research Laboratory, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA

  • *These authors contributed equally to this work.
  • †yiyin@zju.edu.cn
  • ‡yangliuphys@zju.edu.cn

Phys. Rev. B 104, L161402 – Published 7 October, 2021

DOI: https://doi.org/10.1103/PhysRevB.104.L161402

Abstract

Interfacial electron-phonon coupling in ultrathin films has attracted much interest recently. Here, by combining angle-resolved photoemission spectroscopy and scanning tunneling microscopy, we report quantized electronic states and strong interfacial electron-phonon coupling in ultrathin Yb films on graphite. We observed clear kinks in the energy-momentum dispersion of quantum well states, and the kink positions agree well with the energies of optical phonons of graphite. The extracted coupling strength λ is largest for the thinnest film with a preferred (“magic”) thickness of four monolayers and exhibits a strong band dependence, which can be qualitatively accounted for by a simple model. The interfacial electron-phonon coupling also gives rise to characteristic steplike structures in the dI/dV spectra, implying dominant coupling with the phonons with zero in-plane momentum. A Lifshitz transition occurs at higher coverage, where quantum well states derived mainly from 5d electrons dominate near the Fermi level and possess large effective mass (up to ∼19me). Our results highlight the potentially important role of interfacial electron-phonon interaction for ultrathin films and provide spectroscopic insight to understand this cross-interface fermion-boson interaction.

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