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Spin-spin correlations and entanglement in elastic electron scattering from hydrogen atoms

机译:从氢原子的弹性电子散射中的旋转旋转相关性和缠结

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摘要

In two recent papers, Blum and Lohmann (2016 Phys. Rev. Lett. 116 033201) and Lohmann et al (2016 Phys. Rev. A. 94 032331), the possibility of continuously varying the degree of entanglement between an elastically scattered electron and the valence electron of quasi-one electron targets was discussed. Here we present results for elastic electron scattering from atomic hydrogen in the energy regime of 1-10 eV and the full range of scattering angles 0 degrees - 180 degrees. We confirm previous calculations at very low energies, which predicted that the hydrogen target is not a promising candidate for Bell correlations through electron collisions. This finding remains unchanged in the near-resonance regime of incident electron energies just below 10 eV. In addition to the spin-correlation parameter P, we present the angle-integrated total cross section, as well as the angle-differential cross section at a few representative collision energies.
机译:在两个近期的论文中,Blum和Lohmann(2016年的Physthe.116 033201)和Lohmann等人(2016年Phys。Rev. A. 94 032331),可能不断改变弹性散射的电子之间的缠结程度 讨论了准一体电子目标的价电子。 在这里,我们在1-10eV的能量方案中从原子氢散射出现弹性电子散射的结果,并且散射角度0度 - 180度。 我们在非常低的能量下确认以前的计算,这预测氢目标不是通过电子碰撞的钟声相关的有希望的候选者。 这一发现在10 eV以下的入射电子能源的近共振制度中保持不变。 除了旋转相关参数P之外,我们还呈现了角度集成的总横截面,以及几个代表性碰撞能量的角差分横截面。

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