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Analysis of the Heyd-Scuseria-Ernzerhof density functional parameter space

机译:Heyd-Scuseria-Ernzerhof密度泛函参数空间的分析

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The Heyd-Scuseria-Ernzerhof (HSE) density functionals are popular for their ability to improve upon the accuracy of standard semilocal functionals such as Perdew-Burke-Ernzerhof (PBE), particularly for semiconductor band gaps. They also have a reduced computational cost compared to hybrid functionals, which results from the restriction of Fock exchange calculations to small inter-electron separations. These functionals are defined by an overall fraction of Fock exchange and a length scale for exchange screening. We systematically examine this two-parameter space to assess the performance of hybrid screened exchange (sX) functionals and to determine a balance between improving accuracy and reducing the screening length, which can further reduce computational costs. Three parameter choices emerge as useful: sX-PBE is an approximation to the sX-LDA screened exchange density functionals based on the local density approximation (LDA); HSE12 minimizes the overall error over all tests performed; and HSE12s is a range-minimized functional that matches the overall accuracy of the existing HSE06 parameterization but reduces the Fock exchange length scale by half. Analysis of the error trends over parameter space produces useful guidance for future improvement of density functionals.
机译:Heyd-Scuseria-Ernzerhof(HSE)密度泛函因能够提高标准半局部泛函(例如Perdew-Burke-Ernzerhof(PBE))的准确性而广受欢迎,特别是对于半导体带隙。与混合功能相比,它们的计算成本也降低了,这是由于Fock交换计算仅限于较小的电子间分离而导致的。这些功能由Fock交换的总体比例和交换筛选的长度范围定义。我们系统地检查了这两个参数空间,以评估混合筛选交换(sX)功能的性能,并确定提高准确性和减少筛选长度之间的平衡,从而可以进一步降低计算成本。出现三个有用的参数选择:sX-PBE是基于局部密度近似(LDA)的sX-LDA筛选的交换密度泛函的近似值; HSE12将所有执行的测试的总误差降至最低; HSE12s是一种范围最小的功能,与现有HSE06参数化的整体精度相匹配,但将Fock交换长度比例降低了一半。分析参数空间上的误差趋势可为将来改进密度泛函提供有用的指导。

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