Scanning Probe Microscopy

Scanning Probe Microscopy
Title Scanning Probe Microscopy PDF eBook
Author Bert Voigtländer
Publisher Springer
Total Pages 375
Release 2015-02-24
Genre Technology & Engineering
ISBN 3662452405

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This book explains the operating principles of atomic force microscopy and scanning tunneling microscopy. The aim of this book is to enable the reader to operate a scanning probe microscope successfully and understand the data obtained with the microscope. The chapters on the scanning probe techniques are complemented by the chapters on fundamentals and important technical aspects. This textbook is primarily aimed at graduate students from physics, materials science, chemistry, nanoscience and engineering, as well as researchers new to the field.

Scanning Probe Microscopy and Spectroscopy

Scanning Probe Microscopy and Spectroscopy
Title Scanning Probe Microscopy and Spectroscopy PDF eBook
Author Roland Wiesendanger
Publisher Cambridge University Press
Total Pages 664
Release 1994-09-29
Genre Science
ISBN 9780521428477

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The investigation and manipulation of matter on the atomic scale have been revolutionised by scanning tunnelling microscopy and related scanning probe techniques. This book is the first to provide a clear and comprehensive introduction to this subject. Beginning with the theoretical background of scanning tunnelling microscopy, the design and instrumentation of practical STM and associated systems are described in detail, as are the applications of these techniques in fields such as condensed matter physics, chemistry, biology, and nanotechnology. Containing 350 illustrations, and over 1200 references, this unique book represents an ideal introduction to the subject for final-year undergraduates in physics or materials science. It will also be invaluable to graduate students and researchers in any branch of science where scanning probe techniques are used.

Scanning Probe Microscopy

Scanning Probe Microscopy
Title Scanning Probe Microscopy PDF eBook
Author Sergei V. Kalinin
Publisher Springer Science & Business Media
Total Pages 1002
Release 2007-04-03
Genre Technology & Engineering
ISBN 0387286683

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This volume will be devoted to the technical aspects of electrical and electromechanical SPM probes and SPM imaging on the limits of resolution, thus providing technical introduction into the field. This volume will also address the fundamental physical phenomena underpinning the imaging mechanism of SPMs.

Roadmap of Scanning Probe Microscopy

Roadmap of Scanning Probe Microscopy
Title Roadmap of Scanning Probe Microscopy PDF eBook
Author Seizo Morita
Publisher Springer Science & Business Media
Total Pages 207
Release 2006-12-30
Genre Technology & Engineering
ISBN 3540343156

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Scanning tunneling microscopy has achieved remarkable progress and become the key technology for surface science. This book predicts the future development for all of scanning probe microscopy (SPM). Such forecasts may help to determine the course ultimately taken and may accelerate research and development on nanotechnology and nanoscience, as well as all in SPM-related fields in the future.

Scanning Probe Microscopes

Scanning Probe Microscopes
Title Scanning Probe Microscopes PDF eBook
Author K. S. Birdi
Publisher CRC Press
Total Pages 450
Release 2003-02-26
Genre Science
ISBN 1135516332

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Scanning Probe Microscopes: Applications in Science and Technology explains, analyzes, and demonstrates the most widely used microscope in the family of microscopes -- the scanning probe microscope. Beginning with an introduction to the development of SPMs, the author introduces the basics of scanning tunneling and atomic force microscopes (STMs an

Exploring Scanning Probe Microscopy with MATHEMATICA

Exploring Scanning Probe Microscopy with MATHEMATICA
Title Exploring Scanning Probe Microscopy with MATHEMATICA PDF eBook
Author Dror Sarid
Publisher John Wiley & Sons
Total Pages 310
Release 2007-02-27
Genre Science
ISBN 3527609873

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This new and completely updated edition features not only an accompanying CD-ROM, but also a new applications section, reflecting the many breakthroughs in the field over the last few years. It provides a complete set of computational models that describe the physical phenomena associated with scanning tunneling microscopy, atomic force microscopy, and related technologies. The result is both a solid professional reference and an advanced-level text, beginning with the basics and moving on to the latest techniques, experiments, and theory. In the section devoted to atomic force microscopy, the author describes the mechanical properties of cantilevers, atomic force microscope tip-sample interactions, and cantilever vibration characteristics. This is followed by an in-depth treatment of theoretical and practical aspects of tunneling phenomena, including metal-insulator-metal tunneling and Fowler-Nordheim field emission. The final section features applications, dealing with, among others, Kelvin and Raman probe microscopy. The self-contained presentation spares researchers valuable time spent hunting through the technical literature for the theoretical results required to understand the models presented. The Mathematica code for all the examples is included in the CD-ROM, affording the freedom to change the values and parameters of specific problems as desired, or even modify the programs themselves to suit various modeling needs.

Acoustic Scanning Probe Microscopy

Acoustic Scanning Probe Microscopy
Title Acoustic Scanning Probe Microscopy PDF eBook
Author Francesco Marinello
Publisher Springer Science & Business Media
Total Pages 513
Release 2012-10-04
Genre Science
ISBN 3642274943

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The combination of atomic force microscopy with ultrasonic methods allows the nearfield detection of acoustic signals. The nondestructive characterization and nanoscale quantitative mapping of surface adhesion and stiffness or friction is possible. The aim of this book is to provide a comprehensive review of different scanning probe acoustic techniques, including AFAM, UAFM, SNFUH, UFM, SMM and torsional tapping modes. Basic theoretical explanations are given to understand not only the probe dynamics but also the dynamics of tip surface contacts. Calibration and enhancement are discussed to better define the performance of the techniques, which are also compared with other classical techniques such as nanoindentation or surface acoustic wave. Different application fields are described, including biological surfaces, polymers and thin films.