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Transferable local pseudopotentials for magnesium, aluminum and silicon

机译:镁,铝和硅的可转移局部伪势

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One obstacle in orbital-free density functional theory (OF-DFT) is the lack of accurate and transferable local pseudopotentials (LPSs). In this work, we build high quality LPSs by inverting Kohn-Sham (KS) equations on bulk valence electron densities to obtain an atom-centered local pseudopotential. With this approach, we build LPSs for Mg, Al, and Si, and then test them in KS DFT calculations of static bulk properties for several Mg, Al, and Si bulk structures as well as β"-Al3Mg. Our Mg, Al, and Si LPSs produce correct ground state properties and phase orderings. These LPSs are then tested in KS-DFT calculations of surface energies for several low-index Mg and Al surfaces, point defect properties in hexagonal-close-packed (hcp) Mg, face-centered cubic (fcc) Al, and diamond Si, and stacking fault energies in fcc Al. All of these LPS results agree quantitatively with the results from nonlocal pseudopotentials with errors less than or equal to 40 meV per atom. Finally, we perform OF-DFT calculations for various Mg and Al structures, employing the Wang-Govind-Carter (WGC) nonlocal kinetic energy density functional (KEDF). The OF-DFT results generally agree well with the corresponding KS-DFT results. With our new Mg and Al LPSs and the WGC KEDF, OF-DFT now provides a practical method for accurate, large-scale first principles simulations of main group metals and their alloys.
机译:无轨道密度泛函理论(OF-DFT)中的一个障碍是缺乏准确且可转移的局部伪势(LPS)。在这项工作中,我们通过将体价电子密度上的Kohn-Sham(KS)方程反演来构建高质量的LPS,以获得原子中心的局部local势。通过这种方法,我们为Mg,Al和Si建立了LPS,然后在KS DFT计算中测试了几种Mg,Al和Si块状结构以及β“ -Al3Mg的静态块体性质。 Si LPS产生正确的基态性质和相序,然后在KS-DFT计算中测试低折射率Mg和Al表面的表面能,六方密堆积(hcp)Mg的点缺陷性质,面中心的立方(fcc)Al和金刚石Si,以及在fcc Al中堆叠故障能,所有这些LPS结果与非局部伪电势的结果在数量上相符,每个原子的误差小于或等于40 meV。使用Wang-Govind-Carter(WGC)非局域动能密度泛函(KEDF)计算各种Mg和Al结构的-DFT,OF-DFT结果通常与相应的KS-DFT结果吻合良好。 Al LPS和WGC KEDF,OF-DFT现在提供了一种实用的方法用于精确,大规模地模拟主族金属及其合金。

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