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Electron-Impact Cross Sections for Ground State to np Excitations of Sodium and Potassium

机译:基态对钠和钾的np激发的电子冲击截面

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摘要

Cross sections for electron impact excitation of atoms are important for modeling of low temperature plasmas and gases. While there are many experimental and theoretical results for excitation to the first excited states, little information is available for excitation to higher states. We present here calculations of excitations from the ground state to the np levels of sodium (n = 3 through 11) and potassium (n = 4 through 12). We also present a calculation for a transition from the excited sodium level 3p to 3d to show the generality of the method. Scaling formulas developed earlier by Kim [Phys. Rev. A >64, 032713 (2001)] for plane-wave Born cross sections are used. These formulas have been shown to be remarkably accurate yet simple to use. We have used a core polarization potential in a Dirac-Fock wave function code to calculate target atom wave functions and a matching form of the dipole transition operator to calculate oscillator strengths and Born cross sections. The scaled Born results here for excitation to the first excited levels are in very good agreement with experimental and other theoretical data, and the results for excitation to the next few levels are in satisfactory agreement with the limited data available. The present results for excitation to the higher levels are believed to be the only data available.
机译:原子的电子冲击激发的截面对于低温等离子体和气体的建模很重要。尽管有许多实验和理论结果可以激发到第一个激发态,但很少有信息可激发到更高的激发态。我们在这里介绍从基态到钠(n = 3至11)和钾(n = 4至12)的np水平的激发的计算。我们还提出了从激发钠水平3p到3d跃迁的计算,以显示该方法的一般性。 Kim先前开发的缩放公式[Phys。 Rev. A > 64 ,032713(2001)]用于平面波Born截面。这些公式已被证明非常准确,但易于使用。我们已经在Dirac-Fock波函数代码中使用了核心极化电势来计算目标原子波函数,并使用了偶极跃迁算符的匹配形式来计算振荡器强度和Born截面。此处按比例缩放的Born结果激发到第一个激发能级与实验和其他理论数据非常吻合,激发到下几个激发能级的结果与有限的数据令人满意。认为目前激发更高水平的结果是唯一可用的数据。

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