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Exploring scanning probe microscopy with Mathematica

Author: Dror Sarid
Publisher: New York : Wiley, ©1997.
Edition/Format:   Print book : EnglishView all editions and formats
Database:WorldCat
Summary:
This book/software edition provides a complete set of computational models that describe the physical phenomena associated with scanning tunneling microscopy, atomic force microscopy, and related technologies. Its self-contained presentation spares researchers the valuable time spent hunting through the technical literature in search of prior theoretical results required to understand the models presented.  Read more...
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Additional Physical Format: Online version:
Sarid, Dror.
Exploring scanning probe microscopy with Mathematica.
New York : Wiley, ©1997
(OCoLC)704482670
Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Dror Sarid
ISBN: 0471168181 9780471168188
OCLC Number: 36884370
Notes: "A Wiley-Interscience publication."
Description: xx, 262 pages : illustrations ; 25 cm
Contents: 1. Introduction --
2. Uniform Cantilevers --
3. Cantilever Conversion Tables --
4. V-Shaped Cantilevers --
5. Tip-Sample Adhesion --
6. Tip-Sample Force Curve --
7. Free Vibrations --
8. Noncontact Mode --
9. Tapping Mode --
10. Metal-Insulator-Metal Tunneling --
11. Fowler-Nordheim Tunneling --
12. Scanning Tunneling Spectroscopy --
13. Coulomb Blockade --
14. Density of States --
15. Electrostatics --
16. Near-Field Optics.
Responsibility: Dror Sarid.
More information:

Abstract:

This book/software edition provides a complete set of computational models that describe the physical phenomena associated with scanning tunneling microscopy, atomic force microscopy, and related technologies. Its self-contained presentation spares researchers the valuable time spent hunting through the technical literature in search of prior theoretical results required to understand the models presented. Mathematica code for all examples is included both in the book and at the accompanying ftp site, affording the freedom to change, at will, the values and parameters of specific problems or even modify the programs themselves to suit various modeling needs.

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