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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Edge plasma diagnostics on W7-AS and ASDEX-Upgrade using fast Li beams
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Edge plasma diagnostics on W7-AS and ASDEX-Upgrade using fast Li beams

机译:使用快速Li光束在W7-AS和ASDEX-Upgrade上进行边缘等离子体诊断

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Knowledge of the impurity concentration and temperature in the core plasma gradient region as well as the SOL is a vital element on the road to documenting and understanding the physics of L- and H-mode transport and the transport barrier itself. To this end, the Li-beam diagnostic capabilities on W7-AS and ASDEX-Upgrade have been expanded to include the measurement of radial profiles of impurity ion density and temperature via charge-exchange-spectroscopy (Li-CXS). After presenting the method of Li-CXS this paper describes the experimental setup on W7-AS as well as ASDEX-Upgrade and presents first results on both experiments. Measurements of C~(6+) and Ne~(10+) spectral lines prove the viability of Li-CSX. In the plasma edge region of W7-AS (r_(eff) > 8 cm) a C~(6+) concentration of about 0.5% could be measured. Temperature values found for C~(6+) are similar to proton/deuteron temperatures. The intensities of several LiI spectral lines (2p -> 2s, 3d -> 2p, 4s -> 2p, 4d -> 2p) have been measured and are used to critically check the underlying cross section database employed within the collisional-excitation Li-beam model, especially for collision processes involving higher Li-states (n >= 3). It was found that the ratio of the spectral lines corresponding to 2d -> 2p and 2p -> 2s transitions is overestimated by the model. These deviations could be eliminated by using improved cross sections in the database.
机译:了解核心等离子体梯度区域以及SOL中的杂质浓度和温度是记录和理解L模式和H模式传输的物理原理以及传输势垒本身的关键要素。为此,W7-AS和ASDEX-Upgrade的锂离子束诊断功能已得到扩展,包括通过电荷交换光谱法(Li-CXS)测量杂质离子密度和温度的径向分布图。介绍了Li-CXS的方法后,本文介绍了W7-AS和ASDEX-Upgrade上的实验设置,并给出了这两个实验的初步结果。 C〜(6+)和Ne〜(10+)谱线的测量证明了Li-CSX的可行性。在W7-AS的等离子边缘区域(r_(eff)> 8 cm),可以测量到约0.5%的C〜(6+)浓度。 C〜(6+)的温度值类似于质子/氘核的温度。已测量了几条LiI谱线的强度(2p-> 2s,3d-> 2p,4s-> 2p,4d-> 2p),并用于严格检查碰撞激励Li-中使用的基础截面数据库光束模型,特别是对于涉及更高Li状态(n> = 3)的碰撞过程。发现该模型高估了对应于2d-> 2p和2p-> 2s跃迁的谱线之比。通过使用数据库中改进的横截面可以消除这些偏差。

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