Theories of scanning probe microscopes at the atomic scale
Top Cited Papers
- 20 October 2003
- journal article
- research article
- Published by American Physical Society (APS) in Reviews of Modern Physics
- Vol. 75 (4) , 1287-1331
- https://doi.org/10.1103/revmodphys.75.1287
Abstract
Significant progress has been made both in experimentation and in theoretical modeling of scanning probe microscopy. The theoretical models used to analyze and interpret experimental scanning probe microscope (SPM) images and spectroscopic data now provide information not only about the surface, but also the probe tip and physical changes occurring during the scanning process. The aim of this review is to discuss and compare the present status of computational modeling of two of the most popular SPM methods—scanning tunneling microscopy and scanning force microscopy—in conjunction with their applications to studies of surface structure and properties with atomic resolution. In the context of these atomic-scale applications, for the scanning force microscope (SFM), this review focuses primarily on recent noncontact SFM (NC-SFM) results. After a brief introduction to the experimental techniques and the main factors determining image formation, the authors consider the theoretical models developed for the scanning tunneling microscope (STM) and the SFM. Both techniques are treated from the same general perspective of a sharp tip interacting with the surface—the only difference being that the control parameter in the STM is the tunneling current and in the SFM it is the force. The existing methods for calculating STM and SFM images are described and illustrated using numerous examples, primarily from the authors’ own simulations, but also from the literature. Theoretical and practical aspects of the techniques applied in STM and SFM modeling are compared. Finally, the authors discuss modeling as it relates to SPM applications in studying surface properties, such as adsorption, point defects, spin manipulation, and phonon excitation.Keywords
This publication has 210 references indexed in Scilit:
- Tailoring magnetism in artificially structured materials: the new frontierSurface Science, 2002
- Inhibition of the [2+2] Cycloaddition: Maleic Anhydride on Si(100)-2×1The Journal of Physical Chemistry B, 2001
- Role of image forces in non-contact scanning force microscope images of ionic surfacesSurface Science, 2000
- Aspects of dynamic force microscopy on NaCl/Cu(111): resolution, tip-sample interactions and cantilever oscillation characteristicsSurface and Interface Analysis, 1999
- Adsorption of Water on Alkali Halide Surfaces Studied by Scanning Polarization Force MicroscopyThe Journal of Physical Chemistry A, 1998
- Magnetic nanostructuresAdvances in Physics, 1998
- Scattering and absorption of surface electron waves in quantum corralsNature, 1994
- Tunneling theory without the transfer-Hamiltonian formalism. IV. The abrupt (zero-width) three-dimensional junctionPhysical Review B, 1976
- Theory of tunneling without transfer Hamiltonian: Relation between continuum and discrete formalisms, and equivalence with elementary theory for noninteracting systemsPhysical Review B, 1975
- The London—van der Waals attraction between spherical particlesPhysica, 1937