Atomic and Molecular Scattering

Author: Alder   Berni  

Publisher: Elsevier Science‎

Publication year: 2012

E-ISBN: 9780323154499

P-ISBN(Paperback): 9780124608108

P-ISBN(Hardback):  9780124608108

Subject: O572.3 Particle type

Language: ENG

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Description

Methods in Computational Physics, Volume 10: Atomic and Molecular Scattering presents the digital methods used in producing quantitative results from the theory of atomic and molecular scattering. This volume contains seven chapters that specifically consider the methods that produce quantum mechanical wavefunctions from which cross sections are deduced.
Chapter 1 covers the solutions of the systems of coupled integro-differential equations using the Hartree and Hartree-Fock methods for atomic structure calculations and the eigenfunction expansion method for electron-atom collision calculations. Chapter 2 treats the translation of the formal results into a generally applicable, efficient, and numerically stable method for solving quantum-mechanical scattering problems. Chapter 3 discusses the exponential method of solution as applied in inelastic scattering, the reaction coordinates for a collinear reactive system, and the modifications of the computational method required for reactive scattering. Chapter 4 outlines the theory and the calculational techniques involved in the use of algebraic expansions in scattering problems, while Chapter 5 deals with the solution of the close-coupled equations. Chapter 6 evaluates the collision between two quantum-mechanical systems with internal structure using the quantum-mechanical operator equations. Lastly, Chapter 7 focuses on the principles and applications of classical trajectory methods.

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 6

Table of Contents

pp.:  6 – 10

Contributors

pp.:  10 – 12

Preface

pp.:  12 – 16

CHAPTER 2. QUANTUM SCATTERING USING PIECEWISE ANALYTIC SOLUTIONS

pp.:  96 – 126

CHAPTER 3. QUANTUM CALCULATIONS IN CHEMICALLY REACTIVE SYSTEMS

pp.:  126 – 158

CHAPTER 4. EXPANSION METHODS FOR ELECTRON–ATOM SCATTERING

pp.:  158 – 226

CHAPTER 5. CALCULATION OF CROSS SECTIONS FOR ROTATIONAL EXCITATION OF DIATOMIC MOLECULES BY HEAVY PARTICLE IMPACT: SOLUTION OF THE CLOSE-COUPLED EQUATIONS

pp.:  226 – 258

CHAPTER 6. AMPLITUDE DENSITIES IN MOLECULAR SCATTERING

pp.:  258 – 302

CHAPTER 7. CLASSICAL TRAJECTORY METHODS

pp.:  302 – 342

Author Index

pp.:  342 – 347

Subject Index

pp.:  347 – 351

Contents of Previous Volumes

pp.:  351 – 357

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