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Spectral Line Shapes of He I Line 3889 Å

机译:He I线3889Å的光谱线形

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Spectral line shapes of neutral helium 3889 Å ( 2 3 S – 3 3 P ) transition line are calculated by using several theoretical methods. The electronic contribution to the line broadening is calculated from quantum statistical many-particle theory by using thermodynamic Green’s function, including dynamic screening of the electron-atom interaction. The ionic contribution is taken into account in a quasistatic approximation, where a static microfield distribution function is presented. Strong electron collisions are consistently considered with an effective two-particle T-matrix approach, where Convergent Close Coupling method gives scattering amplitudes including Debye screening for neutral helium. Then the static profiles converted to dynamic profiles by using the Frequency Fluctuation Model. Furthermore, Molecular Dynamics simulations for interacting and independent particles are used where the dynamic sequence of microfield is taken into account. Plasma parameters are diagnosed and good agreements are shown by comparing our theoretical results with the recent experimental result of Jovićević et al. (J. Phys. B: At. Mol. Opt. Phys. 2005, 38, 1249). Additionally, comparison with various experimental data in a wide range of electron density n e ≈ ( 10 22 − 10 24 ) m − 3 and temperature T ≈ ( 2 − 6 ) × 10 4 K are presented.
机译:中性氦3889Å(2 3 S – 3 3 P)跃迁线的谱线形状是使用几种理论方法计算得出的。电子对谱线加宽的贡献是根据量子统计多粒子理论通过使用热力学格林函数(包括动态筛选电子-原子相互作用)来计算的。在准静态近似中考虑了离子的贡献,其中给出了静态微场分布函数。有效的两粒子T矩阵方法始终考虑强电子碰撞,其中会聚紧密耦合方法给出的散射幅度包括对中性氦的德拜筛选。然后,使用频率波动模型将静态轮廓转换为动态轮廓。此外,在考虑了微场的动态序列的情况下,使用了相互作用和独立粒子的分子动力学模拟。通过将我们的理论结果与Jovićević等人的最新实验结果进行比较,可以诊断血浆参数并显示出良好的一致性。 (J.Phys.B:At.Mol.Opt.Phys.2005,38,1249)。另外,与各种实验数据进行了比较,在宽的电子密度n e≈(10 22-10 24)m-3和温度T≈(2-6)×10 4 K范围内进行了比较。

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