Chagas da Silva Mauricio, Lorke Michael, Aradi Bálint, Farzalipour Tabriz Meisam, Frauenheim Thomas, Rubio Angel, Rocca Dario, Deák Peter
Bremen Center for Computational Materials Science, University of Bremen, P.O. Box 330440, D-28334 Bremen, Germany.
Max Planck Institute for the Structure and Dynamics of Matter, Luruper Chaussee 149, Geb. 99 ((Center for Free-Electron Laser Science - CFEL)), 22761 Hamburg, Germany.
Phys Rev Lett. 2021 Feb 19;126(7):076401. doi: 10.1103/PhysRevLett.126.076401.
Supercell models are often used to calculate the electronic structure of local deviations from the ideal periodicity in the bulk or on the surface of a crystal or in wires. When the defect or adsorbent is charged, a jellium counter charge is applied to maintain overall neutrality, but the interaction of the artificially repeated charges has to be corrected, both in the total energy and in the one-electron eigenvalues and eigenstates. This becomes paramount in slab or wire calculations, where the jellium counter charge may induce spurious states in the vacuum. We present here a self-consistent potential correction scheme and provide successful tests of it for bulk and slab calculations.
超晶胞模型常用于计算晶体体相、表面或导线中局部偏离理想周期性的电子结构。当缺陷或吸附剂带电时,会施加均匀电子气反电荷以维持整体电中性,但在总能量以及单电子本征值和本征态中,都必须校正人为重复电荷的相互作用。这在平板或导线计算中变得至关重要,因为均匀电子气反电荷可能在真空中诱导出虚假态。我们在此提出一种自洽势校正方案,并给出其在体相和平板计算中的成功测试。