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Theory of Molecular Rydberg States
The first single-authored book dedicated to the theory of molecular Rydberg states by multi-channel quantum defect and ab initio methods.
M. S. Child (Author)
9780521769952, Cambridge University Press
Hardback, published 11 August 2011
330 pages, 70 b/w illus. 30 tables
25.3 x 18 x 2 cm, 0.81 kg
Molecular Rydberg states have many unusual properties, lending themselves to a diverse range of experimental applications. This book is designed to unravel the mysteries of molecular Rydberg states that lie beyond the scope of accepted spectroscopic theories. It is the first single-authored text to focus on the application of multi-channel quantum defect theory (MQDT) and ab initio theory to this special class of molecular systems, introducing readers to novel theoretical techniques. The scattering techniques of MQDT are examined, along with a unified description of bound states and fragmentation dynamics. Connections with established spectroscopic theory are also described. The book concludes with an account of the spherical tensor and density matrix theories required for the interpretation of multi-photon experiments. While the main text focuses on physical principles and experimental applications, appendices are used to handle advanced mathematical detail. This is a valuable resource for researchers in chemical, atomic and molecular physics.
Preface
1. Molecular Rydberg states
2. Ab initio quantum defects
3. Frame transformations and channel interactions
4. Competitive fragmentation
5. Photo-excitation
6. Photo-ionization
7. Manipulating Rydberg states
Appendices
Index.
Subject Areas: Mechanics of solids [TGMD], Materials science [TGM]