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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Signatures of the projectile electron-target core elastic scattering in Ar (e, 2e) reactions at low and intermediate impact energies
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Signatures of the projectile electron-target core elastic scattering in Ar (e, 2e) reactions at low and intermediate impact energies

机译:中低冲击能量下Ar(e,2e)反应中的弹丸电子-靶心弹性散射特征

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The momentum distributions of the recoil ions Ar~+ in Ar (e, 2e) reactions are obtained at incident electron energies from 80 to 220 eV by using the reaction microscope. The contributions of large longitudinal momentum corresponding to the large scattering angle are significant. By comparing the single differential cross sections of the Ar (e, 2e) with those of the electron-argon elastic scattering process, it is concluded that the elastic scattering between the incident electron and the target core plays an important role in the large angle ionization scattering process, and the additional phase shift introduced by the ionized electron results in the disappearance of the sharp minimum that was observed in the elastic scattering. A qualitative explanation of the bigger relative contributions of recoil ions with large longitudinal momenta in Ne (e, 2e) compared to the case in Ar (e, 2e) is given.
机译:通过使用反应显微镜,在入射电子能量为80至220 eV的情况下,获得了Ar(e,2e)反应中反冲离子Ar〜+的动量分布。对应于较大散射角的较大纵向动量的贡献是显着的。通过比较Ar(e,2e)的单微分截面和电子-氩弹性散射过程的微分截面,可以得出结论,入射电子与靶芯之间的弹性散射在大角度电离中起重要作用。散射过程,以及离子化电子引入的附加相移会导致在弹性散射中观察到的尖锐最小值消失。定性解释了Ne(e,2e)中具有较大纵向动量的反冲离子相对于Ar(e,2e)的相对贡献更大。

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