Bederson / Walther | Advances in Atomic, Molecular, and Optical Physics | E-Book | sack.de
E-Book

E-Book, Englisch, 321 Seiten

Bederson / Walther Advances in Atomic, Molecular, and Optical Physics

E-Book, Englisch, 321 Seiten

ISBN: 978-0-08-056151-6
Verlag: Elsevier Book Series
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



This series, established in 1965, is concerned with recent developments in the general area of atomic, molecular, and optical physics. The field is in a state of rapid growth, as new experimental and theoretical techniques are used on many old and new problems. Topics covered also include related applied areas, such as atmospheric science, astrophysics, surface physics, and laser physics.
Articles are written by distinguished experts who are active in their research fields. The articles contain both relevant review material as well as detailed descriptions of important recent developments.
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Weitere Infos & Material


1;Front Cover ;1
2;Advances in Atomic, Molecular, and Optical Physics, Volume 40;4
3;Copyright Page;5
4;Contents;6
5;Contributors;8
6;Chapter 1. Electric Dipole Moments of Leptons;12
6.1;I. Introduction;12
6.2;II. Theoretical Models of Lepton EDMs;17
6.3;III. The Electron EDM;25
6.4;IV. The Muon EDM;47
6.5;V. Weak Dipole Moment and EDM of the Tau Lepton;50
6.6;VI. Magnetic and Electric Dipole Moments of Neutrinos;55
6.7;VII. Acknowledgments;59
6.8;VIII. References;59
7;Chapter 2. High-Precision Calculations for the Ground and Excited States of the Lithium Atom;68
7.1;I. Introduction;68
7.2;II. Computational Approaches;69
7.3;III. Some Mathematical Issues;74
7.4;IV. Nonrelativistic Energies;78
7.5;V. Relativistic Corrections to the Energies;91
7.6;VI. Specific Mass Shift Correction to the Energy Levels;94
7.7;VII. Quantum Electrodynamic Corrections;99
7.8;VIII. The First Ionization Potential;101
7.9;IX. Hyperfine Coupling Constants;104
7.10;X. Other Properties;111
7.11;XI. Outlook;114
7.12;XII. Acknowledgments;116
7.13;XIII. References;116
8;Chapter 3. Storage Ring Laser Spectroscopy;124
8.1;I. Introduction;125
8.2;II. Properties of Existing Heavy-Ion Storage Rings;126
8.3;III. Kinematic Effects in Storage Rings;128
8.4;IV. Laser Experiments in the Electron Cooler;133
8.5;V. Laser Cooling;142
8.6;VI. A Test of Special Relativity in the Storage Ring;153
8.7;VII. Quantum Electrodynamics in Strong Fields Probed by Laser Spectroscopy in Highly Charged Ions;157
8.8;VIII. Conclusion and Outlook;166
8.9;IX. Acknowledgments;167
8.10;X. References;168
9;Chapter 4. Laser Cooling of Solids;172
9.1;I. Introduction;172
9.2;II. Historical Review of the Thermodynamics of Fluorescence Cooling;176
9.3;III. Working Substances for Fluorescence Cooling;186
9.4;IV. Laser Cooling of Ytterbium-Doped ZBLANP Glass;199
9.5;V. Fundamental Limits;215
9.6;VI. Conclusions and Prospects;232
9.7;VII. Acknowledgments;234
9.8;VII. Notes;235
9.9;IX. References;235
10;Chapter 5. Optical Pattern Formation;240
10.1;I. Introduction;240
10.2;II. General Features About OPF;244
10.3;III. OPF and Solitary Structures in Cavities;280
10.4;IV. Quantum Fluctuations and Optical Pattern Formation;289
10.5;V. Acknowledgments;306
10.6;VI. References;306
11;SUBJECT INDEX;318
12;CONTENTS OF VOLUMES IN THIS SERIES;324


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