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Three-dimensional cross sections for electron impact ionization of atoms and molecules

机译:原子和分子电子碰撞电离的三维横截面

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Using a multi-particle momentum spectrometer (reaction microscope), three-dimensional and fully differential cross sections (FDCS) for electron impact ionization are obtained, providing benchmark data for comprehensive tests of theoretical calculations. Since all final-state particles, including the scattered projectile were detected, a good momentum transfer resolution was obtained also for heavy targets like Ar. Results for ionization of the Ar 3p- and He 1s-orbitals by 200 eV electron impact are presented. The cross section patterns display rich structure, which is partially reproduced by theory, although differences persist out-of-the scattering plane. Kinematically complete experiments for electron impact ionization of simple diatomic molecules have attracted increased attention concerning molecular structure effects. (e, 2e) on He and H_(2) is studied at equivalent collision kinematics to explore the differences of atomic and molecular ionization. Here FDCS were obtained covering the whole solid angle.
机译:使用多粒子型谱仪(反应显微镜),获得用于电子冲击电离的三维和全差分横截面(FDC),提供用于综合理论计算的基准数据。由于检测到包括散射射弹的所有最终状态颗粒,因此也可以获得良好的动量转移分辨率,如Ar等重靶标。介绍了AR 3P-和HE 1S-轨道电离的结果,提出了200个EV电子冲击。横截面图案显示丰富的结构,其通过理论部分再现,尽管差异持续到散射平面。在简单的硅藻分子的电子碰撞电离的运动学完整实验引起了分子结构作用的增加。 (E,2E)在他和H_(2)上,在等效的碰撞运动学中研究了原子和分子电离的差异。这里获得FDC覆盖整个立体角度。

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