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Tokamak Fusion Test Reactor prototype x‐ray pulse‐height analyzer diagnostic

机译:托卡马克Fusion Test Reactor原型X射线脉冲高度分析仪诊断

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The x‐ray pulse‐height analysis (PHA) diagnostic uses a liquid‐nitrogen cooled array of 5 Si(Li) and one HpGe detectors to do time‐resolved (5–100 ms) x‐ray spectroscopy of the central horizontal chord of the Tokamak Fusion Test Reactor (TFTR) plasmas in the 1–50‐keV range. Central electron temperature Te and concentration of medium and low‐Z impurities are derived from the spectra. Remotely selectable absorber‐foil arrays provide selection of the energy range. Fixed and movable aperture arrays allow approximate equalization of count rates in different energy bands and extend dynamic range. Amplifier pulse shapes are approximately triangular. Main amplifier peaking time is 4 μs yielding 230‐eV FWHM at 5.9 keV. Pileup inspection times are selectable at 0.13, 0.4, or 0.9 μs. Throughput is up to 42 kHz. The PHA has been used to study temperature and impurities over a wide range of TFTR operational parameters. Dramatic variations in metal impurities with density, plasma current, and major radius have been observed.
机译:X射线脉冲高度分析(PHA)诊断使用液氮冷却的5个Si(Li)阵列和一个HpGe检测器对X射线的中央水平弦进行时间分辨(5-100 ms)X射线光谱托卡马克聚变测试反应堆(TFTR)等离子体的范围为1-50keV。中心电子温度Te以及中低Z杂质的浓度是由光谱得出的。远程选择的吸收器箔阵列可提供能量范围的选择。固定和可移动光圈阵列可以使不同能带中的计数率近似均衡,并扩展动态范围。放大器脉冲形状近似为三角形。主放大器的峰值时间为4μs,在5.9 keV时产生230 eV FWHM。堆积检查时间可以选择为0.13、0.4或0.9μs。吞吐量高达42 kHz。 PHA已用于研究各种TFTR操作参数上的温度和杂质。已经观察到金属杂质随密度,等离子体电流和长半径的急剧变化。

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