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Validation of the ITER CXRS design by tests on TEXTOR

机译:通过TEXTOR上的测试验证ITER CXRS设计

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摘要

The charge exchange recombination spectroscopy system (CXRS) for ITER is designed to measure the core helium concentration, and in addition, profiles of ion temperature and rotation. This highly demanding task, due to the huge background radiation (bremsstrahlung) and the high attenuation of the dedicated diagnostic neutral beam, requires high throughput spectrometers with high resolution. On TEXTOR, a CXRS system has been developed with the aim to test the physics implications of these specifications. (i) A relevant spectrometer has been tested. (ii) A method to determine the helium concentrations from the CXRS intensity, using the beam emission has been evaluated. A 20% discrepancy in beam emission was revealed. (iii) The determination of the magnetic pitch angle by the ratio of Balmer lines showed qualitatively the right behavior, although the accuracy was limited by the polarization sensitivity of the first mirror. (iv) The simulation code developed for the prediction of the CXRS spectra was quantitatively confronted with experimental data
机译:用于ITER的电荷交换重组光谱系统(CXRS)设计用于测量核心氦浓度,以及离子温度和旋转曲线。由于巨大的背景辐射(bre致辐射)和专用诊断中性束的高衰减,这项要求很高的任务需要具有高分辨率的高通量光谱仪。在TEXTOR上,已经开发了CXRS系统,旨在测试这些规范的物理含义。 (i)相关光谱仪已经过测试。 (ii)已经评估了一种使用束发射从CXRS强度确定氦浓度的方法。发现光束发射有20%的差异。 (iii)通过巴尔默线的比率确定磁俯仰角定性地显示出正确的行为,尽管精度受到第一反射镜的偏振灵敏度的限制。 (iv)为预测CXRS光谱而开发的模拟代码在定量上与实验数据相对

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