Quantum Theory of High-Energy Ion-Atom Collisions
One of the Top Selling Physics Books according to YBP Library ServicesSuitable for graduate students, experienced researchers, and experts, this book provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. Special attention is paid to four-body interactive dynamics through the most important theoretical
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Quantum Theory of High-Energy Ion-Atom Collisions
One of the Top Selling Physics Books according to YBP Library ServicesSuitable for graduate students, experienced researchers, and experts, this book provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. Special attention is paid to four-body interactive dynamics through the most important theoretical
84.99 In Stock
Quantum Theory of High-Energy Ion-Atom Collisions

Quantum Theory of High-Energy Ion-Atom Collisions

by Dzevad Belkic
Quantum Theory of High-Energy Ion-Atom Collisions

Quantum Theory of High-Energy Ion-Atom Collisions

by Dzevad Belkic

eBook

$84.99 

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Overview

One of the Top Selling Physics Books according to YBP Library ServicesSuitable for graduate students, experienced researchers, and experts, this book provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. Special attention is paid to four-body interactive dynamics through the most important theoretical

Product Details

ISBN-13: 9781040205600
Publisher: CRC Press
Publication date: 11/13/2008
Sold by: Barnes & Noble
Format: eBook
Pages: 432
File size: 5 MB

Table of Contents

Basic Notions and Main Observables in Scattering Problems. Requirements of the Theory for the Experiment. Continuous Spectrum and Eigen-Problems of Resolvents. Linear and Bilinear Functionals. Definition of a Quantum Scattering Event. The Adiabatic Theorem and the Abel Strong Limit. Non-Stationary and Stationary Scattering via Strong Limits. Scattering Matrix and Transition Matrix. Spectral Analysis of Operators. The Existence and Completeness of Moller Wave Operators. Four-Body Theories for Fast Ion-Atom Collisions. Perturbation Series with the Correct Boundary Conditions. The Dodd-Greider Series for Four-Body Collisions. Double Electron Capture. Simultaneous Transfer and Ionization. Single Electron Detachment. Single Electron Capture. Simultaneous Transfer and Excitation. Concluding Remarks and Outlooks. Index.
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