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New Directions in Atomic Physics C.T. Whelan

New Directions in Atomic Physics By C.T. Whelan

New Directions in Atomic Physics by C.T. Whelan


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Summary

The last few years have seen some remarkable advances in the understanding of atomic phenomena. They correspond to the invited talks at a conference dedicated to the study of "New Directions in Atomic Physics," which took place in Magdalene College, Cambridge in July of 1998.

New Directions in Atomic Physics Summary

New Directions in Atomic Physics by C.T. Whelan

The last few years have seen some remarkable advances in the understanding of atomic phenomena. It is now possible to isolate atomic systems in traps, measure in coincidence the fragments of collision processes, routinely produce, and study multicharged ions. One can look at bulk matter in such a way that the fundamental atomic character is clearly evident and work has begun to tease out the properties of anti matter. The papers in this book reflect many aspects of modem Atomic Physics. They correspond to the invited talks at a conference dedicated to the study of "New Directions in Atomic Physics," which took place in Magdalene College, Cambridge in July of 1998. The meeting was designed as a way of taking stock of what has been achieved and, it was hoped, as a means of stimulating new research in new areas, along new lines. Consequently, an effort was made to touch on as many directions as we could in the four days of the meeting. We included some talks which overviewed whole subfields, as well as quite a large number of research contributions. There is a unity to Physics and we tried to avoid any artificial division between theory and experiment. We had roughly the same number of talks from those who are primarily concerned with making measurements, and from those who spend their lives trying to develop the theory to describe the experiments.

Table of Contents

Collective Resonances in Metallic Clusters.- Recent Advances in Electron-Electron Coincidence Experiments.- Recoil Ion Momentum Spectroscopy Momentum Space Images of Atomic Reactions.- A Brief Report on Density Functional Theory.- Ion-Atom Collisions.- Superfluidity and Feshbach Resonances in BEC.- (e,2e) Processes.- Positrons, Positronium and Anti-Hydrogen.- Ionization in Time-Dependent Processes: Proton-Hydrogen Collisions.- Magnetic Atom Optics.- Optics and Interferometry with Atoms and Molecules.- Negative Ion Resonances in Surface Dynamics: New Results and Applications.- Atomic Collisions with Antiparticles.- Electron Impact Ionization of Helium[(e,2e) & (e,3e)] Investigated with Cold Target Recoil-Ion Momentum Spectroscopy.- Near Threshold Electron Impact Ionization of Neon and Argon.- The Role of Compound States in the Continuum Emission from Moderately Ionized Rare-Earth Plasmas.- (e,3e) Double Ionization: Comparative Results for He, Ne and Ar.- Double Ionization of Helium by Fast Electron Impact.- Hollow Atoms and Interactions of Highly Charged Ions with Surfaces.- Electron Scattering by Diatomic Molecules Adsorbed on Surfaces.- Ionization Ion-Atom Collisions: Recoil-Ion Momentum Spectroscopy and Ejected Electron Spectroscopy.- Time Reversal Violation in the YbF Molecule.- Thomas Process and Wave Function Imaging in p-He Transfer Ionization Investigated by COLTRIMS.- Positron and Positronium Collisions.- Autoionizing 3s3p6np Resonances along the Argon-Like Sequence.- Collisionless Modes of a Trapped Bose Gas.- (e,2e) Measurements on Lithium with Spin-Polarized Beams of Electrons and Atoms.- Photoabsorption of Positive Ions.- Electron Spectroscopy as a Tool for Environmental Science.- Atomic Physics on High-Performance (Parallel) Computers.- The R Matrix-FloquetTheory of Multiphoton Processes.- Soft X-Ray Narrowband Continuum Emission from Laser Produced Plasmas.- On the use of the (e,2e) Technique as a Surface Probe.- Electron Pair Emission from Solids and Clean Surfaces upon Electron and Photon Impact.- Some Remarks on the Scattering of Electrons from a Metallic Surface.- Triple Differential Cross Sections for the Electron Impact Ionization of Helium, Neon and Argon from 0.1 to 1keV. Theory and Experiment Compared.- Bose-Einstein Condensates in Spatially Periodic Potentials.- An Atom Interferometer as a Thermometer.- Characteristics of Low Energy (e,2e) Processes.- New Results for Double Excitation Processes with Helium Targets.- Anisotropic Expansion of Finite Temperature Bose Gases-Emergence of Interaction Effects Between Condensed and Non-Condensed Atoms.

Additional information

NPB9780306461811
9780306461811
0306461811
New Directions in Atomic Physics by C.T. Whelan
New
Hardback
Springer Science+Business Media
1999-09-30
373
N/A
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