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The dependence of the Auger peak shape and energy on the incident ion energy, angle of incidence and on the angle of Auger electron emission with respect to the surface is presented. The velocity of the Auger electron acquires a Doppler shift by virtue of the emission from a moving source. The neon is assumed to be excited in a single asymmetric neon-aluminum-collision and scattered back into the vacuum where it emits an Auger electron. The study also demonstrates the unique power of the MS-PCID/MS-ECE imaging system as an advanced state-of-the-art ion imaging method for wide-angle dynamic parametric studies in PFD space and other ion study applications.īinary collision model for neon Auger spectra from neon ion bombardment of the aluminum surfaceĪ model is developed to account for the angle-resolved Auger spectra from neon ion bombardment of the aluminum surface recently obtained by Pepper and Aron. Relative dynamic qualitative neon ion spectrometry was made by the unaided eyes demonstrating relative neon ion energy as they appear. The panorama neon ion images as diagnosed even by the unaided eyes demonstrate the lowest and highest ion yields from the hollow-end cylinder and flat-end cone anode tops respectively. The neon ion emission yields on the PFD cylinder top base are in an increasing order ~2.1Ã-109, ~2.2 Ã-109, ~2.8Ã-109, ~2.9Ã-109, and ~3.5Ã-109 neon ions/shot for the 5 stated anode top geometries respectively. By analysis of the forward neon ion emission images, the ion emission yields, ion emission angular distributions, iso-fluence ion contours and solid angles of ion emissions in 4Ï€ PFD space were determined. The images can be simply observed, analyzed and relatively quantified in terms of ion emission angular distributions even by the unaided eyes. Position-sensitive mega-size panorama polycarbonate ion image detectors (MS-PCID) developed by dual-cell circular mega-size electrochemical etching (MS-ECE) systems were applied for processesing wide-angle neon ion images on MS-PCIDs exposed on the PFD cylinder top base under a single pinch shot. In this paper, we examine the fluorescent emission spectra of so-called neon colored papers and plastic clipboards available in department and…Įffects of anode geometry on forward wide-angle neon ion emissions in 3.5 kJ plasma focus device by novel mega-size panorama polycarbonate image detectorsįorward wide-angle neon ion emissions in a 3.5 kJ plasma focus device (PFD) were studied using 5 different anode top geometries hollow-end cylinder, solid triangle, solid hemisphere, hollow-end cone and flat-end cone. In each case, the fluorescent emission was excited by either green or violet-blue laser light. Several papers in this journal have dealt with the fluorescence in orange neon plastic, olive oil, and soda. Lastly, this setup and the first results are an important test for developing the technique for the upcoming high density, low temperature island divertor regime.Įnergy-transfer processes in neon-hydrogen mixtures excited by electron beamsĮnergy- and charge-transfer processes in neon-hydrogen mixtures (500-1400 hPa neon and 0.001-3 hPa hydrogen partial pressures) excited by a pulsed low-energy (.« lessĭemonstrating Fluorescence with Neon Paper and PlasticĮRIC Educational Resources Information Center The setup for a first systematic test of these techniques of quantitative atomic spectroscopy in the limiter startup phase (OP1.1) is reported together with first measured profiles. König, R.Ī beam emission spectroscopy system on thermal helium (He) and neon (Ne) has been set up at Wendelstein 7-X to measure edge electron temperature and density profiles utilizing the line-ratio technique or its extension by the analysis of absolutely calibrated line emissions. Feasibility of line-ratio spectroscopy on helium and neon as edge diagnostic tool for Wendelstein 7-Xīarbui, T.
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