Department of Chemistry, Rice University, Houston, Texas 77005-1827, USA.
J Chem Phys. 2011 Jul 21;135(3):034112. doi: 10.1063/1.3610650.
Describing strong (also known as static) correlation caused by degenerate or nearly degenerate orbitals near the Fermi level remains a theoretical challenge, particularly in molecular systems. Constrained-pairing mean-field theory has been quite successful, capturing the effects of static correlation in bond formation and breaking in closed-shell molecular systems by using singlet electron entanglement to model static correlation at mean-field computational cost. This work extends the previous formalism to include triplet pairing. Additionally, a spin orbital extension of the "odd-electron" formalism is presented as a method for understanding electron entanglement in molecules.
描述由费米能级附近简并或近简并轨道引起的强(也称为静态)相关仍然是一个理论挑战,特别是在分子系统中。受约束配对平均场理论已经相当成功,通过使用单电子纠缠来模拟静态相关,以平均场计算成本来捕捉闭壳层分子系统中键形成和断裂的静态相关效应。这项工作将以前的形式体系扩展到包括三重态配对。此外,还提出了“奇数电子”形式的自旋轨道扩展,作为理解分子中电子纠缠的一种方法。