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Analysis of electron-positron momentum spectra of metallic alloys as supported by first-principles calculations

机译:第一性原理支持的金属合金电子正电子动量谱分析

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摘要

Electron-positron momentum distributions measured by the coincidence Doppler broadening method can be used in the chemical analysis of the annihilation environment, typically a vacancy-impurity complex in a solid. In the present work, we study possibilities for a quantitative analysis, i.e., for distinguishing the average numbers of different atomic species around the defect. First-principles electronic structure calculations self-consistently determining electron and positron densities and ion positions are performed for vacancy-solute complexes in Al-Cu, Al-Mg-Cu, and Al-Mg-Cu-Ag alloys. The ensuing simulated coincidence Doppler broadening spectra are compared with measured ones for defect identification. A linear fitting procedure, which uses the spectra for positrons trapped at vacancies in pure constituent metals as components, has previously been employed to find the relative percentages of different atomic species around the vacancy [A. Somoza et al. Phys. Rev. B 65, 094107 (2002)]. We test the reliability of the procedure by the help of first-principles results for vacancy-solute complexes and vacancies in constituent metals.
机译:通过同时多普勒展宽法测量的电子-正电子动量分布可用于the没环境的化学分析,通常是固体中的空位-杂质配合物。在当前的工作中,我们研究了定量分析的可能性,即,用于区分缺陷周围不同原子种类的平均数目。第一性原理的电子结构计算可自洽地确定Al-Cu,Al-Mg-Cu和Al-Mg-Cu-Ag合金中空位-溶质配合物的电子和正电子密度和离子位置。随后将模拟的重合多普勒加宽光谱与测得的光谱进行比较,以进行缺陷识别。线性拟合程序使用在纯净的构成金属中空位处捕获的正电子的光谱作为组分,以前已被用来寻找空位周围不同原子种类的相对百分比[A. Somoza等。物理B 65,094107(2002)。我们借助第一性原理结果对空位-溶质配合物和组成金属中的空位测试了该程序的可靠性。

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