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Tags: atomic force microscopy

Description

Atomic force microscopy (AFM) or scanning force microscopy (SFM) is a very high-resolution type of scanning probe microscopy, with demonstrated resolution on the order of fractions of a nanometer, more than 1000 times better than the optical diffraction limit.

Learn more about quantum dots from the many resources on this site, listed below. More information on AFM can be found here.

Resources (1-20 of 109)

  1. VEDA: Virtual Environment for Dynamic AFM

    30 May 2012 | Tools | Contributor(s): Daniel Kiracofe, John Melcher, Arvind Raman, Sudharsan Balasubramaniam, Steven Douglas Johnson, Shuiqing Hu

    A suite of dynamic AFM simulators for air/liquid/vacuum on soft or hard samples.

    http://nanohub.org/resources/veda

  2. Base Motion Calculations

    17 Jun 2011 | Tools | Contributor(s): Daniel Kiracofe

    Automates the calculations in the paper by Kiracofe and Raman, Nanotechnology, 2011

    http://nanohub.org/resources/abase

  3. VEDA: Amplitude Modulated Scanning

    20 Oct 2009 | Tools | Contributor(s): John Melcher, Shuiqing Hu, Arvind Raman, Steven Douglas Johnson, Daniel Kiracofe

    This tool is being replaced by VEDA 2.0. Use that tool instead.

    http://nanohub.org/resources/vedaams

  4. VEDA 2.0 (Virtual Environment for Dynamic AFM)

    28 Aug 2008 | Tools | Contributor(s): John Melcher, Daniel Kiracofe, Shuiqing Hu, Arvind Raman

    There is a new version of this tool which can be found here. Please use that tool instead

    http://nanohub.org/resources/adac

  5. SUGARCube - Cantilever

    01 May 2008 | Tools | Contributor(s): Fengyuan Li, Brandon Patterson, Jason Clark, yi zeng

    Cantilever modeling and simulation with different loads

    http://nanohub.org/resources/sugar

  6. VEDA: Dynamic Approach Curves

    15 Mar 2007 | Tools | Contributor(s): John Melcher, Shuiqing Hu, Steven Douglas Johnson, Daniel Kiracofe, Arvind Raman

    This tool is being replaced by VEDA 2.0. Use that tool instead.

    http://nanohub.org/resources/dynamicafm

nanoHUB.org, a resource for nanoscience and nanotechnology, is supported by the National Science Foundation and other funding agencies. Any opinions, findings, and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of the National Science Foundation.