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Electron-Impact Ionization of Neon at Low Projectile Energy: An Internormalized Experiment and Theory for a Complex Target

机译:低弹丸能量下氖的电子碰撞电离:复杂目标的非正规化实验和理论

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摘要

As a fundamental test for state-of-the-art theoretical approaches, we have studied the single ionization (2p) of neon at a projectile energy of 100 eV. The experimental data were acquired using an advanced reaction microscope that benefits from high efficiency and a large solid-angle acceptance of almost 4π. We put special emphasis on the ability to measure internormalized triple-differential cross sections over a large part of the phase space. The data are compared to predictions from a second-order hybrid distorted-wave plus R-matrix model and a fully nonperturbative B-spline R-matrix (BSR) with pseudostates approach. For a target of this complexity and the low-energy regime, unprecedented agreement between experiment and the BSR model is found. This represents a significant step forward in the investigation of complex targets.
机译:作为最新理论方法的基础测试,我们研究了在100 eV的射弹能量下氖的单电离(2p)。实验数据是使用先进的反应显微镜获得的,该显微镜受益于高效率和近4π的大立体角接受度。我们特别强调了在很大一部分相空间上测量归一化三微分截面的能力。将数据与来自二阶混合畸变波加R矩阵模型和具有伪状态方法的完全非扰动B样条R矩阵(BSR)的预测进行比较。对于这种复杂性和低能耗方案的目标,在实验和BSR模型之间找到了前所未有的协议。这是研究复杂目标的重要一步。

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