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ITER Core Imaging X-ray Spectroscopy: Atomic Physics Issues

机译:ITER核心成像X射线光谱:原子物理问题

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The Core Imaging X-Ray Spectrometer (CIXS) will be employed for measurements of the ion temperature and of the toroidal rotation velocity, T_i and v_Φ, respectively, as a function of the radius of ITER plasmas. The diagnostic is based on precision determinations of the Doppler broadening, centroid shift, and intensity of the lines of highly ionized heavy impurities using a curved Bragg crystal spectral disperser and imager. The ions under consideration for the diagnostic are those of tungsten, krypton, xenon, iron, and argon. A detailed discussion is given of the need for atomic physics experiments and calculations involving the primary diagnostic lines and their collisional and dielectronic satellites. Such experiments and calculations define the instrument parameters, determine the diagnostic uncertainties, and provide paths for extending the diagnostic capabilities to measure impurity concentrations, electron temperature, and ion transport parameters. Enabling the diagnostic to measure radially dependent ion transport coefficients, in particular, requires a large amount of high-quality atomic data in the form of reliable excitation, ionization, and recombination rate coefficients as well as ionization balance calculations which make use of these data. Because core imaging spectrometers are being developed and implemented on present-day magnetic fusion devices, much of the atomic data are already needed and can be tested in the analysis of existing spectra recorded by these diagnostics.
机译:核心成像X射线光谱仪(CIX)将用于分别用于测量离子温度和环形旋转速度,T_I和V_φ,作为迭代等离子体的半径的函数。诊断基于使用弯曲布拉格晶体光谱分散器和成像仪的多普勒展现,质心移位和高电离重杂质线的强度的精确测定。诊断所考虑的离子是钨,氪,氙,铁和氩气的离子。详细讨论是需要原子理物理实验和涉及主要诊断线及其碰撞和致密电态卫星的计算。这种实验和计算定义了仪器参数,确定诊断不确定性,并提供用于延长诊断能力以测量杂质浓度,电子温度和离子传输参数的路径。启用诊断测量径向依赖性离子输运系数,特别地,需要在可靠激励,电离,和重组率系数的形式以及电离平衡计算,这使得使用这些数据的大量的高品质的原子数据。因为核心成像光谱仪正在在当天的磁融合装置上开发和实现,所以已经需要大部分原子数据,并且可以在这些诊断记录的现有光谱分析中进行测试。

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