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Elastic and Inelastic Scattering in Electron Diffraction and Imaging by Zhong Lin Wang β€” book cover

Elastic and Inelastic Scattering in Electron Diffraction and Imaging

by Zhong Lin Wang, Wang, Wang Zhong-Lin Wang
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Overview

This unique volume provides comprehensive coverage of the theories and techniques of elastic and inelastic electron diffraction and imaging as well as their applications in quantitative structure determination using transmission and scanning transmission electron microscopy. The author summarizes principles, techniques, and applications in his discussions of thermal diffusely scattered, valence-loss, and atomic inner-shell scattered electrons in compositional sensitive imaging.

Synopsis

This unique volume provides comprehensive coverage of the theories and techniques of elastic and inelastic electron diffraction and imaging as well as their applications in quantitative structure determination using transmission and scanning transmission electron microscopy. The author summarizes principles, techniques, and applications in his discussions of thermal diffusely scattered, valence-loss, and atomic inner-shell scattered electrons in compositional sensitive imaging.

Booknews

Explains the physics involved in electron diffraction and imaging and related applications for materials characterization, emphasizing the diffraction and imaging of inelastically scattered electrons. The goal is to help readers understand phenomena observed in electron microscopy from the perspective of diffraction physics. Assumes previous knowledge of electron microscopy, electron diffraction, and quantum mechanics. The topics include the Bloch wave and the multislice theories, reciprocity, high-resolution transmission imaging, and multiple scattering. Annotation c. Book News, Inc., Portland, OR (booknews.com)

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Editorials

Booknews

Explains the physics involved in electron diffraction and imaging and related applications for materials characterization, emphasizing the diffraction and imaging of inelastically scattered electrons. The goal is to help readers understand phenomena observed in electron microscopy from the perspective of diffraction physics. Assumes previous knowledge of electron microscopy, electron diffraction, and quantum mechanics. The topics include the Bloch wave and the multislice theories, reciprocity, high-resolution transmission imaging, and multiple scattering. Annotation c. Book News, Inc., Portland, OR (booknews.com)

Book Details

Published
January 1, 1995
Publisher
Springer-Verlag New York, LLC
Pages
476
Format
Hardcover
ISBN
9780306449291

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