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Influence of electron-electron correlations and lattice effects on positron-electron enhancement factors

机译:电子相关性和晶格效应对正电子增强因子的影响

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We present an approach taking into account the effect of electron-electron (e-e) correlations on electron-positron (e-p) momentum density distributions. The approach bases on the modification of the Bethe-Goldstone (B-G) equation for the positron in the electron gas due to self-energy effects. The example calculations have been performed for selected parameters corresponding to simple metals. The calculated dependencies exhibit the increase of the e-p enhancement factors below Fermi momentum, like Kahana cnhancements, and a decrease above the Fermi sphere, leading to a many-body "tail" in the e-p momentum density distributions. Moreover, the influence of lattice effects on enhancement factors (EF) is taken into account. This decreases by a few percent the absolute values of the e-p momentum distributions and the corresponding annihilation rates and for real metals such as Mg or Cu evidently improve the agreement with experiment.
机译:我们提出一种考虑电子-电子(e-e)相关对电子-正电子(e-p)动量密度分布的影响的方法。该方法基于由于自能量效应而对电子气中正电子的Bethe-Goldstone(B-G)方程的修改。已针对与简单金属相对应的选定参数执行了示例计算。计算出的依存关系表现出在费米动量以下的e-p增强因子的增加,如Kahana增强,在费米球面以上的减小,导致e-p动量密度分布中的多体“尾巴”。此外,考虑了晶格效应对增强因子(EF)的影响。这使e-p动量分布的绝对值和相应的an灭率降低了几个百分点,对于诸如Mg或Cu的真实金属,显然可以改善与实验的一致性。

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