Comparison of fast ion collective Thomson scattering measurements at ASDEX Upgrade with numerical simulations

Collective Thomson scattering (CTS) experiments were carried out at ASDEX Upgrade to measure the one-dimensional velocity distribution functions of fast ion populations. These measurements are compared with simulations using the codes TRANSP/NUBEAM and ASCOT for two different neutral beam injection...

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Veröffentlicht in:Nuclear fusion 2010-03, Vol.50 (3), p.035012-035012
Hauptverfasser: Salewski, M, Meo, F, Stejner, M, Asunta, O, Bindslev, H, Furtula, V, Korsholm, S.B, Kurki-Suonio, T, Leipold, F, Leuterer, F, Michelsen, P.K, Moseev, D, Nielsen, S.K, Stober, J, Tardini, G, Wagner, D, Woskov, P
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Sprache:eng
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Zusammenfassung:Collective Thomson scattering (CTS) experiments were carried out at ASDEX Upgrade to measure the one-dimensional velocity distribution functions of fast ion populations. These measurements are compared with simulations using the codes TRANSP/NUBEAM and ASCOT for two different neutral beam injection (NBI) configurations: two NBI sources and only one NBI source. The measured CTS spectra as well as the inferred one-dimensional fast ion velocity distribution functions are clearly asymmetric as a consequence of the anisotropy of the beam ion populations and the selected geometry of the experiment. As expected, the one-beam configuration can clearly be distinguished from the two-beam configuration. The fast ion population is smaller and the asymmetry is less pronounced for the one-beam configuration. Salient features of the numerical simulation results agree with the CTS measurements while quantitative discrepancies in absolute values and gradients are found.
ISSN:0029-5515
1741-4326
DOI:10.1088/0029-5515/50/3/035012