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Titlebook: Quantum Electrodynamics of Strong Fields; W. Greiner Book 1983 Springer Science+Business Media New York 1983 X-ray.atoms.dynamics.electrod

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Theory of Positron Creation in Supercritical Quasimolecules,field in the presence of strong external electromagnetic fields. Theoretical predictions for positron production rates are compared with experimental results. Emphasize is laid on effects due to nuclear time delay and on the influence of electron screening for both sub- and supercritical collision s
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Spectroscopy of Superheavy Quasimolecules,arge dependence from Z.+Z. = 134 up to Z.+Z. = 184 and compare our results with recent experimental data. The influence of electron screening on vacancy formation and the possibility to use .-electron spectra in collisions with nuclear sticking as an ‘atomic clock’ are also discussed. Strong magneti
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Search for Spontaneous Positron Production in Heavy-Ion Collisions,rojectile velocities which are slow compared to the orbital velocities of the inner-shell electrons, these electrons will adjust their orbitals during the course of such collisions, evolving for small internuclear separations into a quasiatomic system with a charge number Z. of the united atom (for
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,δ-Ray Spectroscopy of Quasi-Atoms, to discuss collision systems with combined charge (Z. = Z.+Z.) of the projectile (Z.) and the target (Z.) atoms about equal or larger than the reciprocal of the fine structure constant: Z. • α ≳ 1. Furthermore, we concentrate on .-electrons with very high energies — above 100 keV up to 2000 keV. It
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,2pσ Molecular Orbital Raditation of Colliding Atoms: Dynamical-Model Predictions Versus Experimentaortant in view of the electronic structure of heavy quasiatoms with effective atomic numbers much higher than 100 and for the observation of new Processes of quantum electrodynamics in very strong electromagnetic fields. The formation and the radiative decay of quasimolecules with inner-shell vacanc
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Continuum X-Ray Emission in Adiabatic Heavy Ion-Atom Collisions,missions learned from measurements on lighter systems provide the groundwork for the extension of studies to the heaviest possible collision systems. Increasingly detailed experiments explore the differential properties of the molecular orbital x-rays and provide for simpler and more direct comparis
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Density Functional Approach to the Relativistic Many Body Problem,the collision of a heavy nucleus from a target atom stripped of all the electrons but one, can not be realised very easily. The strong field effects do occur against the background of many electron physics.
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,The Muon (g — 2) Experiments at CERN,experiments in terms of physical principle rather than technical details; full accounts of the experimental methods may be found in the original papers to which reference is made in some of the review articles given below..
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