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Titlebook: Recombination of Atomic Ions; W. G. Graham,W. Fritsch,J. A. Tanis Book 1992 Springer Science+Business Media New York 1992 Electron Beam Io

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Angular Effects in Dielectronic Recombination and Resonance Transfer Excitationne of the bound electrons of the ion. These doubly excited autoionizing states can decay by the emission of either an electron or a photon. When the final state after x-ray emission is stable against autoionization, this process’ is called the dielectronic recombination (DR).
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Dielectronic Recombination and Radiative Recombination Measurements at Aarhus Universityexperimental progress obtained with the electron target at Aarhus University. Radiative recombination for bare ions as well as for ions carrying electrons is considered. For dielectronic recombination, we will focus on He-like ions in the 1.2.(..) metastable configuration as well as field effects in dielectronic recombination in Li-like ions.
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Dielectronic Recombination Measurements using the Electron Beam Ion Traps device is ideal for the study of electron-ion interactions, and most of these processes can be observed simultaneously. We have recently begun using a high-resolution spectrometer that provides state-selective data resolving individual resonances. Generally, the agreement between our data and theory has been good.
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Discussion of Dielectronic Recombination and Radiative Recombinationarameters which modify recombination cross sections. These include both static and time-dependent external electric and magnetic fields, plasma effects and collisions. An understanding of the role played by these effects, which overlap in many circumstances, is far from complete, with only fragmentary experimental data available.
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Summary of Discussion Session: Theoretical Aspects of RecombinationWilson started the proceedings by raising several questions directed primarily to Hahn:
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Electron-Ion Recombination Experiments on the KSU EBISA summary is given of experiments on dielectronic recombination and electron excitation in the Kansas State University electron-beam ion source. The use of charge state equilibria, x-ray yields and rate constants to determine cross sections for electron ion collision cross sections is discussed.
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