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Enhanced conductance response in radio frequency scanning tunnelling microscopy

Research output: Contribution to journalArticlepeer-review

Abstract

Diverse spectroscopic methods operating at radio frequency depend on a reliable calibration to compensate for the frequency dependent damping of the transmission lines. Calibration may be impeded by the existence of a sensitive interdependence of two or more experimental parameters. Here, we show by combined scanning tunnelling microscopy measurements and numerical simulations how a frequency-dependent conductance response is affected by different DC conductance behaviours of the tunnel junction. Distinct and well-defined DC-conductance behaviour is provided by our experimental model systems, which include C 60 molecules on Au(111), exhibiting electronic configurations distinct from the well-known dim and bright C 60 ’s reported so far. We investigate specific combinations of experimental parameters. Variations of the modulation amplitude as small as only a few percent may result in systematic conductance deviations as large as one order of magnitude. We provide practical guidelines for calibrating respective measurements, which are relevant to RF spectroscopic measurements.
Original languageEnglish
Article number6183
Number of pages9
JournalSci Rep
Volume12
Issue number1
DOIs
Publication statusPublished - 13 Apr 2022

Fields of science

  • 210006 Nanotechnology
  • 103 Physics, Astronomy
  • 103011 Semiconductor physics
  • 103018 Materials physics
  • 103009 Solid state physics
  • 103017 Magnetism

JKU Focus areas

  • Sustainable Development: Responsible Technologies and Management

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