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Updated: May 8, 2026

Detection and Quantification of Tunneling Nanotubes Using 3D Volume View Images
Published on: August 31, 2022
Fundamental quantum noise mapping with tunnelling microscopes tested at surface structures of subatomic lateral size
Markus Herz1, Samuel Bouvron, Elizabeta Ćavar
1Department of Physics, University of Konstanz, 78457 Konstanz, Germany. elke.scheer@uni-konstanz.de.
Abstract:
We present a measurement scheme that enables quantitative detection of the shot noise in a scanning tunnelling microscope while scanning the sample. As test objects we study defect structures produced on an iridium single crystal at low temperatures. The defect structures appear in the constant current images as protrusions with curvature radii well below the atomic diameter. The measured power spectral density of the noise is very near to the quantum limit with Fano factor F = 1. While the constant current images show detailed structures expected for tunnelling involving d-atomic orbitals of Ir, we find the current noise to be without pronounced spatial variation as expected for shot noise arising from statistically independent events.
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