Stahl Terrence L, Banerjee Samragni, Sokolov Alexander Yu
Department of Chemistry and Biochemistry, The Ohio State University, Columbus, Ohio 43210, USA.
J Chem Phys. 2022 Jul 28;157(4):044106. doi: 10.1063/5.0097333.
Algebraic diagrammatic construction (ADC) theory is a computationally efficient and accurate approach for simulating electronic excitations in chemical systems. However, for the simulations of excited states in molecules with unpaired electrons, the performance of ADC methods can be affected by the spin contamination in unrestricted Hartree-Fock (UHF) reference wavefunctions. In this work, we benchmark the accuracy of ADC methods for electron attachment and ionization of open-shell molecules with the UHF reference orbitals (EA/IP-ADC/UHF) and develop an approach to quantify the spin contamination in charged excited states. Following this assessment, we demonstrate that the spin contamination can be reduced by combining EA/IP-ADC with the reference orbitals from restricted open-shell Hartree-Fock (ROHF) or orbital-optimized Møller-Plesset perturbation (OMP) theories. Our numerical results demonstrate that for open-shell systems with strong spin contamination in the UHF reference, the third-order EA/IP-ADC methods with the ROHF or OMP reference orbitals are similar in accuracy to equation-of-motion coupled cluster theory with single and double excitations.
代数图形构造(ADC)理论是一种用于模拟化学体系中电子激发的计算高效且准确的方法。然而,对于具有未成对电子的分子激发态模拟,ADC方法的性能可能会受到无限制Hartree-Fock(UHF)参考波函数中的自旋污染影响。在这项工作中,我们用UHF参考轨道对开壳层分子的电子附着和电离的ADC方法的准确性进行基准测试(EA/IP-ADC/UHF),并开发一种量化带电激发态中自旋污染的方法。经过此评估,我们证明通过将EA/IP-ADC与来自受限开壳层Hartree-Fock(ROHF)或轨道优化的Møller-Plesset微扰(OMP)理论的参考轨道相结合,可以减少自旋污染。我们的数值结果表明,对于在UHF参考中有强自旋污染的开壳层体系,采用ROHF或OMP参考轨道的三阶EA/IP-ADC方法在准确性上与含单双激发的运动方程耦合簇理论相似。