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- W2100028483 abstract "Beam-foil spectroscopy has a long history for determining charge state evolution, radiative decay lifetimes, spectral widths, and satellite structure. Many theoretical results predict a range of populations and state dependencies, but high resolution or a very large bandpass is normally required to test or investigate these. The current investigation has tested some key assumptions and models as applied to this relativistic regime, particularly for few-electron iron resonances and satellites. We conclude that there are two specific production mechanisms, one inside the target to low-n levels and one dominated by capture mechanisms at the exit of the foil, with particularly significant Rydberg cascades. Several systematics in high-precision measurements of these systems are discussed and quantified for the first time. The 2s–1s and 4f–2p satellites are explicitly investigated, and a dominant systematic is uncovered that is due to the variable location of spectral emission, downstream of the beam-foil target. PACS Nos.: 32.70.Jz, 34.10.+x, 52.20.Hv, 34.60.+z" @default.
- W2100028483 created "2016-06-24" @default.
- W2100028483 creator A5032548998 @default.
- W2100028483 date "2008-02-01" @default.
- W2100028483 modified "2023-10-18" @default.
- W2100028483 title "Charge and state population in dilute plasmas from beam-foil spectroscopy" @default.
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- W2100028483 doi "https://doi.org/10.1139/p07-173" @default.
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