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- W51047181 abstract "Abstract Optical transitions of dense Al laser produced plasmas have been investigated in the out-streaming plasma jet. A strong emission from line transitions originating from several charge states (Li-like until Ne-like, spectral range 450 – 550 nm) is observed. Spectra simulations which employ ab inito atomic structure calculations have been established. The simulations demonstrate the potential use of optical spectra of highly charged ions in dense plasmas to determine the charge state distribution. On the basis of Zeeman-Stark simulation we discuss also the possible application for magnetic field measurements. I. Introduction Since the publication of the first monograph on plasma spectroscopy [1], spectroscopic methods have provided essential information about basic plasma parameters and relevant physical processes. The accessible parameter range covers orders of magnitude ion temperature and (especially) density, because practically all elements of particular, selected isoelectronic sequences can be used for diagnostics. These elements may occur as intrinsic impurities or may be intentionally injected in small amounts. Detailed reviews of spectroscopic methods have been published since [2-4]. In hot plasmas (e.g.: magnetic and inertial fusion, high energy laser produced plasmas, high current Z-pinches), x-ray line transitions from single and double excited states of highly ionized ions are usually employed for plasma diagnostics whereas optical transitions are rarely considered. In the present work, we report about an experimental campaign [5] at the PALS laser facility [6] to investigate optical transitions from highly charged ions in a plasma." @default.
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- W51047181 date "2006-12-01" @default.
- W51047181 modified "2023-10-11" @default.
- W51047181 title "Optical transitions of highly charged ions in high density laser produced plasmas" @default.
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