Lestrange Patrick J, Williams-Young David B, Petrone Alessio, Jiménez-Hoyos Carlos A, Li Xiaosong
Department of Chemistry, University of Washington , Seattle, Washington 98195, United States.
Department of Chemistry, Wesleyan University , Middletown, Connecticut 06459, United States.
J Chem Theory Comput. 2018 Feb 13;14(2):588-596. doi: 10.1021/acs.jctc.7b00832. Epub 2018 Jan 29.
Projected Hartree-Fock (PHF) theory can restore important symmetries to broken symmetry wave functions. Variation after projection (VAP) implementations make it possible to deliberately break and then restore a given symmetry by directly minimizing the projected energy expression. This technique can be applied to any symmetry that can be broken from relaxing constraints on single Slater determinant wave functions. For instance, generalized Hartree-Fock (GHF) wave functions are eigenfunctions of neither Ŝ nor S. By relaxing these constraints, the wave function can explore a larger variational space and can reach lower energies than more constrained HF solutions. We have implemented spin-projected GHF (SGHF), which retains many of the advantages of breaking symmetry while also being a spin eigenfunction, with some notable improvements over previous implementations. Our new algorithm involves the formation of new intermediate matrices not previously discussed in the literature. Discretization of the necessary integration over the rotation group SO(3) is also accomplished much more efficiently using Lebedev grids. A novel scheme to incrementally build rotated Fock matrices is also introduced and compared with more standard approaches.
投影哈特里-福克(PHF)理论可以将重要对称性恢复到破缺对称性的波函数中。投影后变分(VAP)实现方式使得通过直接最小化投影能量表达式来故意打破并随后恢复给定对称性成为可能。该技术可应用于任何通过放宽对单斯莱特行列式波函数的约束而能被打破的对称性。例如,广义哈特里-福克(GHF)波函数既不是(\hat{S})的本征函数也不是(S)的本征函数。通过放宽这些约束,波函数可以探索更大的变分空间,并且比约束更强的HF解能达到更低的能量。我们已经实现了自旋投影GHF(SGHF),它保留了打破对称性的许多优点,同时也是自旋本征函数,与之前的实现相比有一些显著改进。我们的新算法涉及形成文献中未曾讨论过的新中间矩阵。使用列别捷夫网格也能更高效地完成旋转群SO(3)上必要积分的离散化。还引入了一种增量构建旋转福克矩阵的新颖方案,并与更标准的方法进行了比较。