Solomon W M, Burrell K H, Feder R, Nagy A, Gohil P, Groebner R J
Princeton Plasma Physics Laboratory, Princeton University, Princeton, New Jersey 08543, USA.
Rev Sci Instrum. 2008 Oct;79(10):10F531. doi: 10.1063/1.2957841.
Measurements of rotation using charge exchange recombination spectroscopy can be affected by the energy dependence of the charge exchange cross section. On DIII-D, the associated correction to the rotation can exceed 100 kms at high temperatures. In reactor-relevant low rotation conditions, the correction can be several times larger than the actual plasma rotation and therefore must be carefully validated. New chords have been added to the DIII-D CER diagnostic to view the counter-neutral-beam line. The addition of these views allows determination of the toroidal rotation without depending on detailed atomic physics calculations, while also allowing experimental characterization of the atomic physics. A database of rotation comparisons from the two views shows that the calculated cross-section correction can adequately describe the measurements, although there is a tendency for "overcorrection." In cases where accuracy better than about 15% is desired, relying on calculation of the cross-section correction may be insufficient.
使用电荷交换复合光谱法测量旋转可能会受到电荷交换截面能量依赖性的影响。在DIII-D装置上,在高温下对旋转的相关修正可能超过100千米/秒。在与反应堆相关的低旋转条件下,该修正可能比实际等离子体旋转大几倍,因此必须仔细验证。已在DIII-D电荷交换复合辐射诊断中增加了新的弦线,以观测反向中性束线。增加这些观测视角使得无需依赖详细的原子物理计算就能确定环向旋转,同时还能对原子物理进行实验表征。来自这两个视角的旋转比较数据库表明,计算出的截面修正能够充分描述测量结果,不过存在“过度修正”的趋势。在需要优于约15%的精度的情况下,仅依靠截面修正的计算可能是不够的。