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Multichord time-resolved electron temperature measurements by the x-ray absorber-foil method on TFTR
Kiraly, J.; Bitter, M.; Efthimion, P.
Princeton Univ., NJ (USA). Plasma Physics Lab1985
Princeton Univ., NJ (USA). Plasma Physics Lab1985
AbstractAbstract
[en] Absorber foils have been installed in the TFTR X-Ray Imaging System to permit measurement of the electron temperature along 10 to 30 chords spaced at 5-12.5 cm with a time resolution of less than 100 μs. The technique uses the ratio of x-ray fluxes transmitted through two different foils. The ratio depends mainly on electron temperature. Simulations show that strong impurity line radiation can distort this ratio. To correct for these effects, special beryllium-scandium filters are employed to select the line-free region between 2 and 4.5 keV. Other filter pairs allow corrections for Fe L and Ni L line radiation as well as Ti K and Ni K emission. Good accuracy is also obtained with simple beryllium filters, provided that impurity corrections are incorporated in the analysis, taking line intensities from the x-ray pulse-height analysis diagnostic. A description of modeling calculations and a comparison of temperature values from this diagnostic with data from the x-ray pulse height analysis, the electron cyclotron emission, and the Thomson scattering diagnostics are presented. Several applications of the absorber foil electron temperature diagnostic on TFTR are discussed
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Sep 1985; 35 p; Available from NTIS, PC A03/MF A01 as DE85017690
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