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ELECTRON–ION RECOMBINATION RATE COEFFICIENTS FOR C II FORMING C I

机译:C II形成C I的电子-离子复合速率系数

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We have determined absolute dielectronic recombination rate coefficients for C II, using the CRYRING heavy-ions storage ring. The resonances due to 2s-2p (?n = 0) core excitations are detected in the center-of-mass energy range of 0-15?eV. The experimental results are compared with intermediate coupling AUTOSTRUCTURE calculations. Plasma rate coefficients are obtained from the DR spectrum by convoluting it with a Maxwell-Boltzmann energy distribution for temperatures in the range of 103-106?K. The derived temperature-dependent plasma recombination rate coefficients are presented graphically and parameterized by using a fit formula for convenient use in plasma modeling codes. The experimental rate coefficients are also compared with the theoretical data available in literature. In the temperature range of 103-2 × 104 K, our experimental results show that previous calculations severely underestimate the plasma rate coefficients and also our AUTOSTRUCTURE calculation does not reproduce the experimental plasma rate coefficients well. Above 2 × 104?K, the agreement between the experimental and theoretical rate coefficients is much better, and the deviations are smaller than the estimated uncertainties.
机译:我们已经使用CRYRING重离子存储环确定了C II的绝对双电子复合率系数。在0-15?e​​V的质心能量范围内检测到2s-2p(?n = 0)磁心激发引起的共振。将实验结果与中间耦合的AUTOSTRUCTURE计算进行了比较。通过在103-106?K范围内的温度下将其与Maxwell-Boltzmann能量分布进行卷积,可以从DR光谱中获得血浆速率系数。导出的温度相关血浆重组率系数以图形方式显示,并通过使用拟合公式进行参数化,以方便在血浆建模代码中使用。还将实验速率系数与文献中可获得的理论数据进行了比较。在103-2×104 K的温度范围内,我们的实验结果表明,先前的计算严重低估了血浆速率系数,而且我们的AUTOSTRUCTURE计算也无法很好地再现实验血浆速率系数。在2×104?K以上,实验和理论速率系数之间的一致性好得多,偏差小于估计的不确定性。

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