Department of Physics and Astronomy and London Centre for Nanotechnology, University College London, Gower Street, London WC1E 6BT, United Kingdom.
J Chem Phys. 2018 Jul 14;149(2):024103. doi: 10.1063/1.5029818.
Charged defects are often studied within the periodic density functional theory (DFT), but this introduces strong finite-size artifacts. In this work, we develop an electrostatic image interaction correction (IIC) method based on the direct solution of the Poisson equation for charge models constructed directly from DFT calculations. These IICs are found to be detail-insensitive, depending almost entirely on bulk dielectric properties. As these IICs are not able to fully explain the observed finite-size scaling, we explore potential alignment in detail and introduce a novel decomposition to separate out different contributions. We find that the two main sources of potential alignment are defect image interactions and changes in the number of atoms present in the supercell. This first effect is accurately predicted by the periodic part of our IIC. The second contribution is unrelated to the IIC and justifies the common observation that the magnitude of finite-size dependence can strongly vary between vacancy and interstitial defects. It can be approximately predicted using atomic radius, but is strongly sensitive to the pseudopotential employed. Combined, these developments provide a new justification for known finite-size scaling rules. Our results suggest that for cubic supercells, the Lany-Zunger IIC, combined with simplified potential alignment between neutral systems, can yield accurate corrections in spite of the simplicity of the approach.
带电缺陷通常在周期性密度泛函理论 (DFT) 中进行研究,但这会引入强烈的有限尺寸伪像。在这项工作中,我们开发了一种基于直接求解泊松方程的静电图像相互作用校正 (IIC) 方法,用于直接从 DFT 计算构建的电荷模型。这些 IIC 不敏感于细节,几乎完全取决于体介电特性。由于这些 IIC 无法完全解释观察到的有限尺寸标度,我们详细探讨了潜在的对准,并引入了一种新的分解方法来分离不同的贡献。我们发现,潜在对准的两个主要来源是缺陷图像相互作用和超胞中存在的原子数量的变化。我们的 IIC 的周期性部分可以准确预测前一种效应。第二种贡献与 IIC 无关,并且证明了常见的观察结果,即空位和间隙缺陷之间的有限尺寸依赖性的大小可以强烈变化。可以使用原子半径来近似预测,但对所使用的赝势非常敏感。综合来看,这些发展为已知的有限尺寸标度规则提供了新的依据。我们的结果表明,对于立方超胞,Lany-Zunger IIC 结合中性系统之间简化的潜在对准,可以产生准确的校正,尽管方法很简单。