Principles of Electron Optics: Second Edition, Advanced Wave Optics provides a self-contained, modern account of electron optical phenomena with the Dirac or Schr�dinger equation as a starting point. Knowledge of this branch of the subject is essential to understanding electron propagation in electron microscopes, electron holography and coherence. Sections in this new release include, Electron Interactions in Thin Specimens, Digital Image Processing, Acquisition, Sampling and Coding, Enhancement, Linear Restoration, Nonlinear Restoration - the Phase Problem, Three-dimensional Reconstruction, Image Analysis, Instrument Control, Vortex Beams, The Quantum Electron Microscope, and much more.
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Table of Contents
Part XIV Electron-specimen Interactions
69. Electron Interactions in Thin Specimens
Part XV�Digital Image Processing
70. Introduction
71. Acquisition, Sampling and Coding
72. Enhancement
73. Linear Restoration
74. Nonlinear Restoration
the Phase Problem
75. Three-dimensional Reconstruction
76. Image Analysis
77. Instrument Control and Instrumental Image Manipulation
Part XVI Coherence, Brightness and Spectral Functions
78. Coherence and the Brightness Functions
79. Wigner Optics
Part XVII�Vortex Studies, the Quantum Electron Microscope
80. Orbital Angular Momentum, Vortex Beams and the Quantum Electron Microscope