Three-dimensional model of single-electron tunneling between a conductive probe and a localized electronic state in a dielectric

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Publication Type journal article
School or College College of Science
Department Physics
Creator Mishchenko, Eugene; Williams, Clayton C.
Other Author Zheng, N.; Bussmann, E.
Title Three-dimensional model of single-electron tunneling between a conductive probe and a localized electronic state in a dielectric
Date 2007
Description Motivated by recent measurements of force detected single-electron tunneling, we present a three-dimensional model for the tunneling rate between a metallic tip and a localized electronic state in a dielectric surface. The tip is assumed to be semi-infinite, with electron wave functions approximated by plane waves. A localized electron state in the dielectric sample is approximated by a spherical quantum well. The tunneling rate is obtained with the help of Bardeen's approach and is compared with the results for a one-dimensional square barrier model. A comparison with experimental data is also presented.
Type Text
Publisher American Institute of Physics (AIP)
Journal Title Journal of Applied Physics
Volume 101
Issue 9
First Page 93702
DOI 10.1063/1.2710438
citatation_issn 218979
Subject Dielectric surface; Tunneling rate
Subject LCSH Electron gas; Tunneling (Physics); Wave functions; Scanning tunneling microscopy
Language eng
Bibliographic Citation Zheng, N., Williams, C. C., Mishchenko, E., & Bussmann, E. (2007). Three-dimensional model of single-electron tunneling between a conductive probe and a localized electronic state in a dielectric. Journal of Applied Physics, 101(9), 093702.
Rights Management (c)American Institute of Physics. The following article appeared in Zheng, N., Williams, C. C., Mishchenko, E., & Bussmann, E., Journal of Applied Physics, 101(9), 2007 and may be found at http://dx.doi.org/10.1063/1.2710438
Format Medium application/pdf
Format Extent 484,519 bytes
Identifier ir-main,11785
ARK ark:/87278/s6gb2n8h
Setname ir_uspace
ID 703730
Reference URL https://collections.lib.utah.edu/ark:/87278/s6gb2n8h
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