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Spin in density-functional theory

机译:旋转密度泛函理论

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摘要

The accurate description of open-shell molecules, in particular of transition metal complexes and clusters, is still an important challenge for quantum chemistry. Although density-functional theory (DFT) is widely applied in this area, the sometimes severe limitations of its currently available approximate realizations often preclude its application as a predictive theory. Here, we review the foundations of DFT applied to open-shell systems, both within the nonrelativistic and the relativistic framework. In particular, we provide an in-depth discussion of the exact theory, with a focus on the role of the spin density and possibilities for targeting specific spin states. It turns out that different options exist for setting up Kohn-Sham DFT schemes for open-shell systems, which imply different definitions of the exchange-correlation energy functional and lead to different exact conditions on this functional. Finally, we suggest possible directions for future developments.
机译:开壳分子,特别是过渡金属配合物和簇的准确描述,仍然是量子化学的重要挑战。尽管密度泛函理论(DFT)在该领域得到了广泛应用,但其当前可用的近似实现有时有时会受到严重限制,因此常常无法将其用作预测理论。在这里,我们回顾了DFT在非相对论和相对论框架内应用于开放式系统的基础。特别是,我们提供了对精确理论的深入讨论,重点是自旋密度的作用以及针对特定自旋态的可能性。事实证明,为开放系统建立Kohn-Sham DFT方案存在不同的选择,这暗示了交换相关能量函数的不同定义,并导致该函数具有不同的精确条件。最后,我们提出了未来发展的可能方向。

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