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Kinematically complete study of low-energy electron-impact ionization of neon: Internormalized cross sections in three-dimensional kinematics

机译:霓虹灯低能电子碰撞电离的运动学完整研究:三维运动学中的非正规化截面

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摘要

Low-energy (E0=65eV) electron-impact single ionization of Ne (2p) has been investigated to thoroughly test state-of-the-art theoretical approaches. The experimental data were measured using a reaction microscope, which can cover nearly the entire 4π solid angle for the secondary electron emission energies ranging from 2 to 8 eV, and projectile scattering angles ranging from 8.5 to 20.0. The experimental triple-differential cross sections are internormalized across all measured scattering angles and ejected energies. The experimental data are compared to predictions from a hybrid second-order distorted-wave Born plus R-matrix approach, the distorted-wave Born approximation with the inclusion of postcollision interaction (PCI), a three-body distorted-wave approach (3DW), and a B-spline R-matrix (BSR) with pseudostates approach. Excellent agreement is found between the experiment and predictions from the 3DW and BSR models, for both the angular dependence and the relative magnitude of the cross sections in the full three-dimensional parameter space. The importance of PCI effects is clearly visible in this low-energy electron-impact ionization process.
机译:对Ne(2p)的低能(E0 = 65eV)电子碰撞单电离已进行了研究,以彻底测试最新的理论方法。使用反应显微镜测量实验数据,该反应显微镜可覆盖2至8 eV范围内的二次电子发射能量的几乎整个4π立体角和8.5至20.0范围内的弹丸散射角。实验的三微分横截面在所有测得的散射角和射出的能量上均归一化。将实验数据与混合二阶失真波Born + R矩阵方法,包含后碰撞相互作用(PCI)的失真波Born近似,三体失真波方法(3DW)的预测值进行比较,以及带有伪状态方法的B样条R矩阵(BSR)。在实验和3DW和BSR模型的预测之间发现了很好的一致性,对于完整的三维参数空间中的角度依赖性和横截面的相对大小。在这种低能电子碰撞电离过程中,PCI效应的重要性显而易见。

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