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Coincidence Studies of Electron and Photon Impact Ionization

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Cover of 'Coincidence Studies of Electron and Photon Impact Ionization'

Table of Contents

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    Book Overview
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    Chapter 1 Recent Absolute (e,2e) Measurements on Atomic Hydrogen and Helium at Low and Intermediate Energies
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    Chapter 2 Second Born Calculations of(e-2e) Cross Sections at Low Energy Using a Pseudostate Set
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    Chapter 3 Excitation — Ionization and Excitation — Autoionization of Helium
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    Chapter 4 An Analytical Approach to Resonant and Direct Fragmentation of Many-Body Coulomb Systems
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    Chapter 5 Ionization Dynamics and Exchange Effects in Pure Three-Body Coulomb Scattering
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    Chapter 6 Analysis of Integrated Cross Sections and Spin Asymmetries for the Electron-Impact Ionization of One- and Two-Electron Atomic Systems
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    Chapter 7 Double Ionization Mechanisms from Triple Coincidence Experiments
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    Chapter 8 Double Ionization of Helium by Electron Impact: A Study of the Two-Step Mechanism
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    Chapter 9 Partitioning of Momentum in Electron-Impact Double Ionization
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    Chapter 10 5DCS and 4DCS Calculations for Symmetric (e,3e) Impact Ionization
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    Chapter 11 Exact and Approximate Methods of the Rigorous Coulomb Scattering Theory
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    Chapter 12 Strong and Weak Statements in the Theory of Dipolar (e,2e) Impact Ionization
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    Chapter 13 The Triple Differential Cross Sections for (γ,2e) in Helium at Intermediate Energies
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    Chapter 14 Total and Single Differential Cross Sections for He Double Photoionization Calculated by the CCC Method
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    Chapter 15 From (γ,2e) to (γ,eR): Kinematically Complete Experiments with Coltrims
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    Chapter 16 Angle Resolved Electron Energy Loss Study on the Inner Shell Excited States of Ne
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    Chapter 17 Circular Dichroism in Double-Photoionization of Helium Studied by Electron Time-Of-Flight Coincidence Spectroscopy
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    Chapter 18 Interference Effects in Argon Auger Coincidence Spectra
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    Chapter 19 Triple Differential Cross Sections for Electron Impact Ionization of Argon between 50 eV and 215.8 eV
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    Chapter 20 Multiple Scattering Effects in High-Energy Electron Molecule Ionization of H 2
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    Chapter 21 Parametrisation of TDCS in a Plane
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    Chapter 22 An Explanation of the Structure Observed in Out-Of-Plane Symmetric Measurements on Helium
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    Chapter 23 On the Addition Theorem for Jacobi Polynomials
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    Chapter 24 Progress Report on Relativistic (e,2e) Processes
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    Chapter 25 Structure of the Triply Differential Cross Section in the Recoil Region in Relativistic Electron Impact Ionization
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    Chapter 26 Coulomb Boundary Conditions for Relativistic (e,2e) Processes
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    Chapter 27 Spin Effects in the (e,2e) Cross Sections of Xenon
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    Chapter 28 Measurements of Spin Polarized (e,2e) Processes at 54.4 eV
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    Chapter 29 Is There Any New Physics in Spin Dependent (e,2e) Collisions?
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    Chapter 30 Electron-Momentum Spectroscopy of Solids by the (e,2e) Reaction
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    Chapter 31 Valence Band Reconstruction in Graphite by Grazing Incidence (e,2e) Spectroscopy
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    Chapter 32 Energy Distribution of Correlated Electron Pairs Excited by Low Energy Electrons from W(001) Measured by a Time-Of-Flight (e,2e) Spectrometer
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    Chapter 33 Electron Impact Ionization of Hydrogenic Ions in Asymmetric Geometries
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    Chapter 34 Bethe-Ridge Effects in (e,2e) on H − (Using 6Dime)
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    Chapter 35 Three-Body Models of Electron-Hydrogen Ionization
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    Chapter 36 The Normalisation of the Experimental Triple Differential Cross Section of Noble Gas Atoms in Extreme Asymmetric Geometry
Attention for Chapter 23: On the Addition Theorem for Jacobi Polynomials
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Citations

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