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Quantum-well and modified image-potential states in thin Pb(111) films: an estimate for the local work function. | LitMetric

AI Article Synopsis

  • The study focuses on quantum-confined electronic states in thin Pb(111) films and their modified image-potential states using low-temperature scanning tunneling microscopy (STM) and spectroscopy (STS).
  • By analyzing the emission resonances, the local work function of the Pb(111) film is estimated to be approximately 3.8 ± 0.1 eV.
  • It is found that changing the shape of the STM tip affects the number of emission peaks in the spectra but does not change the local work function, and a blunter tip results in less pronounced peaks in the differential tunneling conductance.

Article Abstract

Quantum-confined electronic states such as quantum-well states (QWS) inside thin Pb(111) films and modified image-potential states (IPS) above the Pb(111) films grown on Si(111) 7 × 7 substrate were studied by means of low-temperature scanning tunnelling microscopy (STM) and spectroscopy (STS) in the regime of constant current. By plotting the position of theth emission resonancesversusand extrapolating the linear fit for the dependence() in the high-limit towards= 0, we estimate the local work function for the Pb(111) film:≃ 3.8 ± 0.1 eV. We experimentally demonstrate that modifications of the shape of the STM tip can change the number of the emission peaks associated with the resonant tunnelling via quantized IPS levels for the same Pb terrace; however it does not affect the estimate of the local work function for the flat Pb terraces. We observe that the maxima in the spectra of the differential tunnelling conductance d/drelated to both the QWS and the modified IPS resonances are less pronounced if the STM tip becomes more blunt.

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Source
http://dx.doi.org/10.1088/1361-648X/aba3f0DOI Listing

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