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Experimental and simulated neon spectra in the 10-nm wavelength region from tokamak and reversed held pinch plasmas

机译:来自托卡马克和反向夹持等离子体的10nm波长区域的实验和模拟氖光谱

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Experimental neon spectra (in the 10-nm region), from the tokamak Tore Supra and the reversed field pinch experiment RFX, have been simulated. The spectra include lines from three neon ionization states, namely Ne7+, Ne6+, and Ne5+ ions. Collisional radiative models have been built for these three Ne ions, considering electron collisional excitation and radiative decay as populating processes of the excited states. These models give photon emission coefficients for the emitted lines at electron density and temperature values corresponding to the experimental situations. Impurity modelling is performed using a one-dimensional impurity transport code, calculating the steady-state radial distribution of the Ne ions. The Ne line brightnesses are evaluated in a post-process subroutine and simulated spectra are obtained. The parts of the spectra corresponding to a single ionization state do not depend on the experimental conditions and show good agreement with the simulated single ionization state spectra. On the other hand, the superposition of the three spectra depends on the experimental conditions, as a consequence of the fact that the ion charge distribution depends not only on the radial profiles of the electron density and temperature, but also of the impurity transport coefficients. Simulations of the Ne spectra (including transport) give confidence in the atomic physics calculations; moreover, they allow the determination of the transport coefficients in the plasma region emitting the considered ionization states. [S1063-651X(99)14510-0]. [References: 35]
机译:来自托卡马克Tora Supra的实验霓虹光谱(在10 nm区域)和反向场收缩实验RFX已被模拟。光谱包括来自三个氖离子化状态的谱线,即Ne7 +,Ne6 +和Ne5 +离子。考虑到电子碰撞激发和辐射衰减是激发态的填充过程,已经针对这三个Ne离子建立了碰撞辐射模型。这些模型给出了在对应于实验情况的电子密度和温度值下发射线的光子发射系数。使用一维杂质传输码执行杂质建模,计算Ne离子的稳态径向分布。在后期处理子程序中评估Ne线的亮度,并获得模拟光谱。对应于单个电离态的光谱部分不依赖于实验条件,并且与模拟的单个电离态光谱显示出良好的一致性。另一方面,这三个光谱的叠加取决于实验条件,这是由于离子电荷分布不仅取决于电子密度和温度的径向分布,还取决于杂质传输系数的事实。 Ne光谱的模拟(包括输运)使人们对原子物理学的计算充满信心。此外,它们允许确定发射所考虑的电离状态的等离子体区域中的传输系数。 [S1063-651X(99)14510-0]。 [参考:35]

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