Linearized spectrum correlation analysis for thermal helium beam diagnostics

We introduce a new correlation analysis technique for thermal helium beam (THB) diagnostics. Instead of directly evaluating line ratios from fluctuating time series, we apply arithmetic operations to all available He I lines and construct time series with desired dependencies on the plasma parameter...

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Veröffentlicht in:Review of scientific instruments 2021-10, Vol.92 (10), p.103501-103501
Hauptverfasser: Nishizawa, T., Griener, M., Dux, R., Grenfell, G., Wendler, D., Kado, S., Manz, P., Cavedon, M.
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Sprache:eng
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Zusammenfassung:We introduce a new correlation analysis technique for thermal helium beam (THB) diagnostics. Instead of directly evaluating line ratios from fluctuating time series, we apply arithmetic operations to all available He I lines and construct time series with desired dependencies on the plasma parameters. By cross-correlating those quantities and by evaluating ensemble averages, uncorrelated noise contributions can be removed. Through the synthetic data analysis, we demonstrate that the proposed analysis technique is capable of providing the power spectral densities of meaningful plasma parameters, such as the electron density and the electron temperature, even under low-photon-count conditions. In addition, we have applied this analysis technique to the experimental THB data obtained at the ASDEX Upgrade tokamak and successfully resolved the electron density and temperature fluctuations up to 90 kHz in a reactor relevant high power scenario.
ISSN:0034-6748
1089-7623
DOI:10.1063/5.0062436