Advances in Atomic Molecular and Optical Physics Volume 63 1st Edition by Ennio Arimondo, Paul R. Berman, Chun C. Lin – Ebook PDF Instant Download/Delivery: 0128001291, 978-0128001295
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Product details:
ISBN 10: 0128001291
ISBN 13: 978-0128001295
Author: Ennio Arimondo, Paul R. Berman, Chun C. Lin
Advances in Atomic, Molecular, and Optical Physics publishes reviews of recent developments in a field that is in a state of rapid growth, as new experimental and theoretical techniques are used on many old and new problems. Topics covered include related applied areas, such as atmospheric science, astrophysics, surface physics and laser physics. Articles are written by distinguished experts and contain relevant review material and detailed descriptions of important recent developments.
- International experts
- Comprehensive articles
- New developments
Table of contents:
- Preface
- Chapter One: Detection of Metastable Atoms and Molecules using Rare Gas Matrices
- Abstract
- 1 Introduction
- 2 Basic Concepts
- 3 Experimental Details
- 4 Calibrations
- 5 O(1S) Measurements
- 6 O(1D) Measurements
- 7 Sulfur Measurements
- 8 CO Measurements
- 9 Future Possibilities
- Chapter Two: Interactions in Ultracold Rydberg Gases
- Abstract
- 1 Introduction
- 2 Pair Interactions
- 3 Rydberg Atom Molecules
- 4 Many-body and Multiparticle Effects
- 5 Conclusion and Perspectives
- Acknowlegments
- Chapter Three: Atomic, Molecular, and Optical Physics in the Early Universe: From Recombination to Reionization
- Abstract
- 1 Introduction
- 2 Cosmological Recombination
- 3 Pregalactic Gas Chemistry
- 4 Population III Star Formation
- 5 The 21-cm Line of Atomic Hydrogen
- 6 The Reionization of Intergalactic Hydrogen
- 7 Summary
- Appendix A Acronyms
- Appendix B Symbols
- Chapter Four: Atomic Data Needs for Understanding X-ray Astrophysical Plasmas
- Abstract
- 1 Introduction
- 2 Charge State Distribution
- 3 Spectral Features
- 4 Conclusions
- Chapter Five: Energy Levels of Light Atoms in Strong Magnetic Fields
- Abstract
- 1 Introduction
- 2 Historical background
- 3 The lightest “light” atom—hydrogen
- 4 Light atoms: two and few-electron systems
- 5 Concluding remarks and future prospects
- Chapter Six: Quantum Electrodynamics of Two-Level Atoms in 1D Configurations
- Abstract
- 1 Introduction
- 2 The 1D Kernel and Its Spectral Decomposition
- 3 Propagation of an Ultrashort Pulse in a Slab and the Ensuing Emitted Radiation Spectrum
- 4 Near-Threshold Behavior for the Pumped Stationary State
- 5 Polariton–Plasmon Coupling, Transmission Peaks, and Purcell–Dicke Ultraradiance
- 6 Periodic Structures
- 7 Conclusion
- Acknowledgments
- Appendix Transfer Matrix Formalism
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Tags: Ennio Arimondo, Paul Berman, Chun Lin, Advances in Atomic, Optical Physics


