Theory of oscillations in the STM conductance resulting from subsurface defects (Review Article)
arXiv:1004.3367 · doi:10.1063/1.3514417
Abstract
In this review we present recent theoretical results concerning investigations of single subsurface defects by means of a scanning tunneling microscope (STM). These investigations are based on the effect of quantum interference between the electron partial waves that are directly transmitted through the contact and the partial waves scattered by the defect. In particular, we have shown the possibility imaging the defect position below a metal surface by means of STM. Different types of subsurface defects have been discussed: point-like magnetic and non-magnetic defects, magnetic clusters in a nonmagnetic host metal, and non-magnetic defects in a s-wave superconductor. The effect of Fermi surface anisotropy has been analyzed. Also, results of investigations of the effect of a strong magnetic field to the STM conductance of a tunnel point contact in the presence of a single defect has been presented.
31 pages, 10 figuers Submitted to Low. Temp. Phys
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Cited by in corpus (6)
- Mapping Itinerant Electrons around Kondo Impurities
- Friedel Oscillation about a Friedel-Anderson Impurity
- Quantum interference effects in a system of two tunnel point-contacts in the presence of single scatterer: simulation of a double-tip STM experiment
- Fermi surface contours obtained from STM images around surface point defects
- Conductance of a STM contact on the surface of a thin film
- Bringing ultimate depth to scanning tunnelling microscopy: deep subsurface vision of buried nano-objects in metals