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First principles and semi-empirical calculations of atomic and electronic structure for the (100) and (110) perovskite surfacesud

机译:(100)和(110)钙钛矿表面的原子和电子结构的第一性原理和半经验计算 ud

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摘要

We present and discuss results of the calculations for BaTiO_3 and SrTiO_3 surface relaxation with different terminations using a semi-empirical shell model (SM) as well as ab initio methods based on Hartree-Fock (HF) and Density Functional Theory (DFT) formalisms. Using the SM, the positions of atoms in 16 near-surface layers placed atop a slab of rigid ions are optimized. This permits us determination of surface rumpling and surface-induced dipole moments (polarization) for different terminations of the (100) and (110) surfaces. We also compare results of the ab initio calculations based on both HF with the DFT-type electron correlation corrections, several DFT with different exchange-correlation functionals, and hybrid exchange techniques. Our SM results for the (100) surfaces are in a good agreement with both our ab initio calculations and LEED experiments. For the (110) surfaces O-termination is predicted to be the lowest in energy.
机译:我们提出并讨论了使用半经验壳模型(SM)以及基于Hartree-Fock(HF)和密度泛函理论(DFT)形式论的从头算方法对具有不同终止条件的BaTiO_3和SrTiO_3表面弛豫的计算结果。使用SM,可以优化放置在刚性离子板上的16个近表面层中原子的位置。这允许我们确定(100)和(110)表面的不同端接的表面起皱和表面引起的偶极矩(极化)。我们还比较了基于HF和DFT型电子相关校正,几种具有不同交换相关功能的DFT和混合交换技术的从头计算结果。我们的(100)曲面的SM结果与我们的从头算算和LEED实验都非常吻合。对于(110)表面,预计O端接的能量最低。

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