
Advances in Atomic and Molecular Physics
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Content
- Cover
- Contents
- List of Contributors
- Foreword
- Contents of Volume 1
- Chapter 1. The Calculation of Van der Waals Interactions
- I. Introduction
- II. The Theory of Long-Range Forces
- III. The Calculation of Long-Range Forces
- IV. Approximate Formulas
- V. Three-Body Forces
- VI. Summary of Values and Comparison with Experiment
- References
- Chapter 2. Thermal Diffusion in Gases
- I. Introduction
- II. Experimental Methods
- III. Molecular Theory of Thermal Diffusion
- IV. Results
- References
- Chapter 3. Spectroscopy in the Vacuum Ultraviolet
- I. Introduction
- II. Instrumentation and Techniques
- III. Atomic Spectra
- IV. Molecular Spectra
- V. Atomic Collisions
- VI. Spectra from Laboratory and Astrophysical Plasmas
- Appendix
- References
- Chapter 4. The Measurement of the Photoionization Cross Sections of the Atomic Gases
- I. Introduction
- II. The Rare Gases
- III. Atomic Oxygen, Nitrogen, and Hydrogen
- IV. The Alkali Metals
- V. Miscellaneous Atoms
- References
- Chapter 5. The Theory of Electron-Atom Collisions
- I. General Problems
- II. Close-Coupling Methods
- III. Other Methods
- IV. Effective Range Theory
- References
- Chapter 6. Experimental Studies of Excitation in Collisions between Atomic and Ionic Systems
- I. Introduction
- II. Processes Leading to Excitation
- III. Cross Sections
- IV. Experimental Procedures
- V. Emission and Polarization of Light as a Function of Gas Pressure and Ion Beam Current
- VI. Excitation Cross Sections
- VII. Electron Capture Cross Sections
- VIII. Combined Excitation and Capture Cross Sections
- IX. Investigations of Astrophysical Interest
- References
- Chapter 7. Mass Spectrometry of Free Radicals
- I. Introduction
- II. General Principles
- III. Ionization and Appearance Potentials by Electron Impact
- IV. Free-Radical Gas Sampling Systems
- V. Modulated Molecular Beam Mass Spectrometry
- VI. Applications
- VII. Summary
- References
- Author Index
- Subject Index
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