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首页> 外文期刊>Plasma physics and controlled fusion >Influence of charge-exchange processes on x-ray spectra in TEXTOR tokamak plasmas: experimental and theoretical investigation
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Influence of charge-exchange processes on x-ray spectra in TEXTOR tokamak plasmas: experimental and theoretical investigation

机译:电荷交换过程对TEXTOR托卡马克等离子体中X射线光谱的影响:实验和理论研究

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Time-resolved high-resolution soft x-ray spectra from gas-puff injected Ar impurity ions have been investigated for neutral beam heated and ohmically heated discharges in the TEXTOR tokamak. The experimental spectra show systematic deviations from corona model calculations for the line intensities of the forbidden He-like lines x, y, z and the Li- and Be-like dielectronic satellite spectra: theoretical corona model calculations predict intensities significantly too low. High-intensity Li-like inner-shell excited satellites correlate with the neutral beam injection. The discrepancies could also be observed in the stationary phase of an inductively heated discharge; In the heating phase the discrepancies are even larger We propose charge-exchange processes between the neutral atoms and the impurity ions as an explanation of the experimental findings. Good agreement with the experimental observations can then be obtained without the need for invoking large (anomalous) diffusion coefficients. A self-consistent coupling of the population kinetics of the neutrals and the impurity ions, also taking into account charge-exchange processes from excited states of hydrogen/deuterium permit the determination of the neutral fraction and of the electron lifetime on the sole basis of impurity spectra analysis. Independent Monte Carlo simulations of neutral gas transport also provides the ionization degree in the centre and the electron lifetime. These calculations are also in good agreement with the spectroscopic results. [References: 43]
机译:对于TEXTOR托卡马克中的中性束加热和欧姆加热的放电,已经研究了由气体注入的Ar杂质离子产生的时间分辨的高分辨率软X射线光谱。实验光谱表明,对于禁止的He类线x,y,z以及Li和Be类双电子卫星光谱的线强度,其电晕模型计算存在系统偏差:理论电晕模型计算预测强度明显过低。高强度的锂样内壳激发卫星与中性束注入相关。还可以在感应加热放电的固定相中观察到差异。在加热阶段,差异甚至更大。我们提出了中性原子和杂质离子之间的电荷交换过程,以解释实验结果。然后,无需调用大(异常)扩散系数即可获得与实验观察的良好一致性。中性粒子和杂质离子的整体动力学的自洽耦合,还考虑到氢/氘的激发态的电荷交换过程,因此可以仅基于杂质来确定中性分数和电子寿命光谱分析。独立的蒙特卡洛模拟对中性气体的传输也提供了中心的电离度和电子寿命。这些计算也与光谱结果非常吻合。 [参考:43]

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