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Chemical Physics and Mesoscopics, 2015, Volume 17, Issue 3, Pages 482–487 (Mi chphm60)  

This article is cited in 1 scientific paper (total in 1 paper)

Research of the influence of the macroscopic shape of the etching neck of the STM probe blank at its nanoscale topology

A. V. Tyurikov, E. Yu. Shelkovnikov, P. V. Gulyaev, B. L. Zhuikov, S. I. Lipanov

Institute of Mechanics, Ural Branch of the Russian Academy of Sciences, Izhevsk, Russian
Full-text PDF (382 kB) Citations (1)
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Abstract: The problems of the influence of the macroscopic shape of the neck of the STM probe blank at producing the atomic nanoscale protrusion are observed with manufacturing the probes by chemical etching. The results of a two-stage modeling process (at macroscopic and atomic scale.) of the neck disruption the tungsten blanks with use of particle dynamics method are presented. It is shown that the most suitable for production the atomic STM resolution are the blanks of STM probes with a thin necks and asymmetrical shape.
Keywords: scanning tunnel microscope, the tungsten tip, the probe tip, the method of particle dynamics, the interaction potential.
Document Type: Article
UDC: 21.385.833
Language: Russian
Citation: A. V. Tyurikov, E. Yu. Shelkovnikov, P. V. Gulyaev, B. L. Zhuikov, S. I. Lipanov, “Research of the influence of the macroscopic shape of the etching neck of the STM probe blank at its nanoscale topology”, CPM, 17:3 (2015), 482–487
Citation in format AMSBIB
\Bibitem{TyuSheGul15}
\by A.~V.~Tyurikov, E.~Yu.~Shelkovnikov, P.~V.~Gulyaev, B.~L.~Zhuikov, S.~I.~Lipanov
\paper Research of the influence of the macroscopic shape of the etching neck of the STM probe blank at its nanoscale topology
\jour CPM
\yr 2015
\vol 17
\issue 3
\pages 482--487
\mathnet{http://mi.mathnet.ru/chphm60}
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  • https://www.mathnet.ru/eng/chphm/v17/i3/p482
  • This publication is cited in the following 1 articles:
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Chemical Physics and Mesoscopics
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    Abstract page:71
    Full-text PDF :1
    References:23
    First page:9
     
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