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The two pillars: density and spin-density functional theories

机译:两大支柱:密度和自旋密度泛函理论

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摘要

The ground-state density and energy of electrons in a spin-independent external potential are described exactly in principle by two related theories, density functional theory (DFT) and spin-density functional theory (SDFT), differing only in their use of the total density versus the up- and down-spin densities. With semilocal approximations to the exchange-correlation energy, the atomisation energies of molecules improve remarkably as we satisfy more exact constraints in SDFT, but not in DFT. We explain why only SDFT is amenable to semilocal approximation in spin-polarised systems such as typical open-shell atoms, and point out the historical importance of SDFT in chemistry. In spin-unpolarised systems, for which DFT and SDFT are equivalent, both theories are normally amenable to semilocal approximations which improve as more exact constraints are satisfied (predicting better equilibrium structures, energies, and energy differences).
机译:独立于自旋的外部电势中的电子的基态密度和能量在原理上由两种相关理论精确描述,密度泛函理论(DFT)和自旋密​​度泛函理论(SDFT),仅在总和的使用上有所不同密度与上下旋转密度。通过交换相关能量的半局部近似,当我们满足SDFT而非DFT中更精确的约束条件时,分子的雾化能显着提高。我们解释了为什么在自旋极化系统(例如典型的开壳原子)中仅SDFT才适合半局部近似,并指出了SDFT在化学中的历史重要性。在DFT和SDFT等效的自旋非极化系统中,两种理论通常都适用于半局部逼近,随着满足更精确的约束(预测更好的平衡结构,能量和能量差),半局部逼近会改善。

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