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Theory and Applications of Generalized Pipek-Mezey Wannier Functions

机译:广义钢管 - 梅泽Wannier功能的理论与应用

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摘要

The theory for the generation of Wannier functions within the generalized Pipek-Mezey approach (Lehtola, S.; Jonsson, H. J. Chem. Theory Comput. 2014, 10, 642) is presented and an implementation thereof is described. Results are shown for systems with periodicity in one, two, and three dimensions as well as isolated molecules. The generalized Pipek-Mezey Wannier functions (PMWF) are highly localized orbitals consistent with chemical intuition where a distinction is maintained between sigma- and pi-orbitals. The PMWF method is compared with the so-called maximally localized Wannier functions (MLWFs) that are frequently used for the analysis of condensed matter calculations. Whereas PMWFs maximize the localization criterion of Pipek and Mezey, MLWFs maximize that of Foster and Boys and have the disadvantage of mixing sigma- and pi-orbitals in many cases. The PMWF orbitals turn out to be as localized as the MLWF orbitals as evidenced by cross-comparison of the values of the PMWF and MLWF objective functions for the two types of orbitals. Our implementation in the atomic simulation environment (ASE) is compatible with various representations of the wave function, including real-space grids, plane waves, and linear combinations of atomic orbitals. The projector-augmented wave formalism for the representation of atomic core electrons is also supported. Results of calculations with the GPAW software are described here, but our implementation can also use output from other electronic structure software such as ABINIT, NWChem, and VASP.
机译:广义管芯方法中若尔函数的产生理论(Lehtola,S.; Jonsson,H. J.Chem。理论计算。提出了2014,10,642),并描述了其实施。结果显示为具有一个,两个和三维和三维以及分离的分子的周期性的系统。广义管克 - 梅泽若尔函数(PMWF)是高度局部化的轨道,其与化学直觉一致,其中区分在Sigma和Pi轨道之间。将PMWF方法与经常用于分析冷凝物计算的所谓的最大局部型号函数(MLWF)进行比较。虽然PMWFS最大限度地提高了管道和梅泽的本地化标准,但MLWFS最大限度地提高了福斯特和男孩的缺点,并且在许多情况下混合了Sigma和Pi轨道的缺点。 PMWF轨道结果作为MLWF轨道的本地化,如PMWF和MLWF目标函数的两种轨道的交叉比较所证明。我们在原子模拟环境(ASE)中的实现与波函数的各种表示,包括实时网格,平面波和原子轨道线性组合。还支持对原子核心电子表示的投影机增强波形主义。这里描述了GPAW软件的计算结果,但我们的实现还可以使用来自其他电子结构软件的输出,例如Abinit,Nwchem和VASP。

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