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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Collisional-radiative calculations of He line emission in low-temperature plasmas
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Collisional-radiative calculations of He line emission in low-temperature plasmas

机译:低温等离子体中He线发射的碰撞辐射计算

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We present spectral modeling results for neutral helium. Our underlying atomic data contains radiative transition rates that are generated from atomic structure calculations and electron-impact excitation rates, that are determined from both the standard R-matrix method and the R-matrix with pseudostates (RMPS) method. In this paper, we focus on transitions of particular importance to diagnostic line ratios. For example, our calculated rate coefficient for the electron-impact transition 1s3s S-1 -> 1s3p P-1, which has a pronounced effect on the 728.1 nm diagnostic spectral line, is found to be in good agreement with previous experimental measurements. We also consider transitions from the 1s(2) S-1 ground and 1s2s S-3 terms to terms of the n=4 shell. They are found to be affected significantly by coupling of the bound states to the target continuum (continuum coupling), which is included in our RMPS calculation, but not in our standard R-matrix calculation. We perform collisional-radiative calculations to determine spectral line intensity ratios for three ratios of particular interest, namely the 504.8 nm/471.3 nm, 492.2 nm/471.3 nm, and 492.2 nm/504.8 nm line ratios. Comparing our results determined from the RMPS excitation rates with those from the standard R-matrix excitation rates, we find that continuum coupling affects the rate coefficients significantly, leading to different values for all three line ratios. We also compare our modeling results with spectral measurements taken recently on the Auburn Helicon plasma device, finding that the ground and metastable populations are not in equilibrium, and that the experimental measurements are more consistent with the 1s2s S-3 metastable term populations being short lived in the plasma.
机译:我们介绍了中性氦的光谱建模结果。我们的基础原子数据包含通过原子结构计算和电子碰撞激发速率生成的辐射跃迁速率,这些辐射跃迁速率是通过标准R矩阵方法和带有伪态的R矩阵(RMPS)方法确定的。在本文中,我们将重点放在对诊断线比值特别重要的过渡上。例如,我们计算出的电子冲击跃迁1s3s S-1-> 1s3p P-1的速率系数对728.1 nm诊断光谱线有显着影响,与先前的实验测量结果非常吻合。我们还考虑了从1s(2)S-1地和1s2s S-3项到n = 4壳项的过渡。发现绑定状态与目标连续体的耦合(连续体耦合)会严重影响它们,这包含在我们的RMPS计算中,但没有包含在我们的标准R矩阵计算中。我们执行碰撞辐射计算,以确定特别关注的三个比率(即504.8 nm / 471.3 nm,492.2 nm / 471.3 nm和492.2 nm / 504.8 nm线比率)的光谱线强度比率。将根据RMPS激发速率确定的结果与根据标准R矩阵激发速率得出的结果进行比较,我们发现连续耦合会显着影响速率系数,从而导致所有三个线比率的值都不同。我们还将建模结果与最近在Auburn Helicon等离子设备上进行的光谱测量相比较,发现地面和亚稳态种群不平衡,并且实验测量与1s2s S-3亚稳态项种群寿命较短更一致在血浆中。

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