Principles of Electron Optics

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  • Publisher : Academic Press
  • Release : 02 December 2012
  • ISBN : 9780080984162
  • Page : 752 pages
  • Rating : 4.5/5 from 103 voters

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The three volumes in the PRINCIPLES OF ELECTRON OPTICS Series constitute the first comprehensive treatment of electron optics in over forty years. While Volumes 1 and 2 are devoted to geometrical optics, Volume 3 is concerned with wave optics and effects due to wave length. Subjects covered include: Derivation of the laws of electron propagation from SchrUdinger's equation Image formation and the notion of resolution The interaction between specimens and electrons Image processing Electron holography and interference Coherence, brightness, and the spectral function Together, these works comprise a unique and informative treatment of the subject. Volume 3, like its predecessors, will provide readers with both a textbook and an invaluable reference source.

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Principles of Electron Optics

Principles of Electron Optics
  • Author : Peter W. Hawkes,E. Kasper
  • Publisher : Academic Press
  • Release Date : 2012-12-02
  • ISBN : 9780080984162
GET THIS BOOKPrinciples of Electron Optics

The three volumes in the PRINCIPLES OF ELECTRON OPTICS Series constitute the first comprehensive treatment of electron optics in over forty years. While Volumes 1 and 2 are devoted to geometrical optics, Volume 3 is concerned with wave optics and effects due to wave length. Subjects covered include: Derivation of the laws of electron propagation from SchrUdinger's equation Image formation and the notion of resolution The interaction between specimens and electrons Image processing Electron holography and interference Coherence, brightness, and the spectral function

Physical Principles of Electron Microscopy

Physical Principles of Electron Microscopy
  • Author : Ray Egerton
  • Publisher : Springer Science & Business Media
  • Release Date : 2011-02-11
  • ISBN : 0387258000
GET THIS BOOKPhysical Principles of Electron Microscopy

Scanning and stationary-beam electron microscopes are indispensable tools for both research and routine evaluation in materials science, the semiconductor industry, nanotechnology and the biological, forensic, and medical sciences. This book introduces current theory and practice of electron microscopy, primarily for undergraduates who need to understand how the principles of physics apply in an area of technology that has contributed greatly to our understanding of life processes and "inner space." Physical Principles of Electron Microscopy will appeal to technologists who use

Principles of Electron Optics, Volume 3

Principles of Electron Optics, Volume 3
  • Author : Peter W. Hawkes,Erwin Kasper
  • Publisher : Academic Press
  • Release Date : 2022-02-21
  • ISBN : 9780128189801
GET THIS BOOKPrinciples of Electron Optics, Volume 3

Principles of Electron Optic: Volume Three: Wave Optics, discusses this essential topic in microscopy to help readers understand the propagation of electrons from the source to the specimen, and through the latter (and from it) to the image plane of the instrument. In addition, it also explains interference phenomena, notably holography, and informal coherence theory. This third volume accompanies volumes one and two that cover new content on holography and interference, improved and new modes of image formation, aberration corrected

Principles of Optics

Principles of Optics
  • Author : Max Born,Emil Wolf
  • Publisher : Elsevier
  • Release Date : 2013-06-01
  • ISBN : 9781483103204
GET THIS BOOKPrinciples of Optics

Principles of Optics: Electromagnetic Theory of Propagation, Interference and Diffraction of Light, Sixth Edition covers optical phenomenon that can be treated with Maxwell’s phenomenological theory. The book is comprised of 14 chapters that discuss various topics about optics, such as geometrical theories, image forming instruments, and optics of metals and crystals. The text covers the elements of the theories of interference, interferometers, and diffraction. The book tackles several behaviors of light, including its diffraction when exposed to ultrasonic waves. The

Principles of Analytical Electron Microscopy

Principles of Analytical Electron Microscopy
  • Author : Joseph Goldstein,David C. Joy,Alton D. Romig Jr.
  • Publisher : Springer Science & Business Media
  • Release Date : 2013-11-11
  • ISBN : 9781489920379
GET THIS BOOKPrinciples of Analytical Electron Microscopy

Since the publication in 1979 of Introduction to Analytical Electron Microscopy (ed. J. J. Hren, J. I. Goldstein, and D. C. Joy; Plenum Press), analytical electron microscopy has continued to evolve and mature both as a topic for fundamental scientific investigation and as a tool for inorganic and organic materials characterization. Significant strides have been made in our understanding of image formation, electron diffraction, and beam/specimen interactions, both in terms of the "physics of the processes" and their practical implementation

Introduction to Electron and Ion Optics

Introduction to Electron and Ion Optics
  • Author : Poul Dahl
  • Publisher : Elsevier
  • Release Date : 2012-12-02
  • ISBN : 9780323160902
GET THIS BOOKIntroduction to Electron and Ion Optics

Introduction to Electron and Ion Optics provides the theoretical background needed to understand the subject matter and even be helpful in laboratory works. Seven major parts comprise the book where each focuses on a certain aspect or field. The book begins with an introduction to the general principles about electron and ion optics, specifically as basis for the design of the optical components used in particle analyzers and accelerators. The following parts tackle different aspects such as geometrical optics; scaling

Principles of Electron Optics

Principles of Electron Optics
  • Author : Peter W. Hawkes,Erwin Kasper
  • Publisher : Academic Press
  • Release Date : 2012-12-02
  • ISBN : 0080962432
GET THIS BOOKPrinciples of Electron Optics

This is a complete handbook and reference volume which covers everything that one needs to know about electron optics. It is a comprehensive coverage of theoretical background and modern computing methods. It contains a detailed and unique account of numerical methods and an extensive bibliography.

Principles of Electron Optics

Principles of Electron Optics
  • Author : Peter W. Hawkes,Erwin Kasper
  • Publisher : Academic Press
  • Release Date : 1996-04-24
  • ISBN : 9780080962412
GET THIS BOOKPrinciples of Electron Optics

Principles of Electron Optics

Electron and Ion Microscopy and Microanalysis

Electron and Ion Microscopy and Microanalysis
  • Author : Lawrence E Murr
  • Publisher : CRC Press
  • Release Date : 2018-10-08
  • ISBN : 9781482293357
GET THIS BOOKElectron and Ion Microscopy and Microanalysis

The publication date of the first edition is not stated, but the new edition is apparently considerably revised and expanded. It was written to serve as a multi-purpose text at the senior or graduate level and as a reference for the practicing scientist or engineer. Readers should have a math backgr

Principles of Optics

Principles of Optics
  • Author : Max Born,Emil Wolf
  • Publisher : Cambridge University Press
  • Release Date : 2019-12-19
  • ISBN : 9781108477437
GET THIS BOOKPrinciples of Optics

The 60th anniversary edition of this classic and unrivalled optics reference work includes a special foreword by Sir Peter Knight.

Low Voltage Electron Microscopy

Low Voltage Electron Microscopy
  • Author : David C. Bell,Natasha Erdman
  • Publisher : John Wiley & Sons
  • Release Date : 2012-11-30
  • ISBN : 9781118498484
GET THIS BOOKLow Voltage Electron Microscopy

Part of the Wiley-Royal Microscopical Society Series, this book discusses the rapidly developing cutting-edge field of low-voltage microscopy, a field that has only recently emerged due to the rapid developments in the electron optics design and image processing. It serves as a guide for current and new microscopists and materials scientists who are active in the field of nanotechnology, and presents applications in nanotechnology and research of surface-related phenomena, allowing researches to observe materials as never before.

Principles of Electron Optics, Volume 1

Principles of Electron Optics, Volume 1
  • Author : Peter W. Hawkes,Erwin Kasper
  • Publisher : Elsevier
  • Release Date : 2017-10-29
  • ISBN : 9780081022573
GET THIS BOOKPrinciples of Electron Optics, Volume 1

Volume one of Principles of Electron Optics: Basic Geometrical Optics, Second Edition, explores the geometrical optics needed to analyze an extremely wide range of instruments: cathode-ray tubes; the family of electron microscopes, including the fixed-beam and scanning transmission instruments, the scanning electron microscope and the emission microscope; electron spectrometers and mass spectrograph; image converters; electron interferometers and diffraction devices; electron welding machines; and electron-beam lithography devices. The book provides a self-contained, detailed, modern account of electron optics for anyone involved

Geometrical Charged-Particle Optics

Geometrical Charged-Particle Optics
  • Author : Harald H. Rose
  • Publisher : Springer Science & Business Media
  • Release Date : 2009
  • ISBN : 9783540859154
GET THIS BOOKGeometrical Charged-Particle Optics

This resource covering all theoretical aspects of modern geometrical charged-particle optics is aimed at anyone involved in the design of electron optical instruments and beam-guiding systems for charged particles.

Principles of Electron Optics

Principles of Electron Optics
  • Author : Peter W. Hawkes,E. Kasper
  • Publisher : Academic Press
  • Release Date : 1996-04-24
  • ISBN : 9780080962429
GET THIS BOOKPrinciples of Electron Optics

Principles of Electron Optics

Scanning Electron Microscopy

Scanning Electron Microscopy
  • Author : Ludwig Reimer
  • Publisher : Springer
  • Release Date : 2013-11-11
  • ISBN : 9783540389675
GET THIS BOOKScanning Electron Microscopy

Scanning Electron Microscopy provides a description of the physics of electron-probe formation and of electron-specimen interactions. The different imaging and analytical modes using secondary and backscattered electrons, electron-beam-induced currents, X-ray and Auger electrons, electron channelling effects, and cathodoluminescence are discussed to evaluate specific contrasts and to obtain quantitative information.