DOE OSTI · 1852700
Equation-of-motion coupled-cluster method with double electron-attaching operators: Theory, implementation, and benchmarks
Abstract
We report a production-level implementation of the equation-of-motion (EOM) coupled-cluster (CC) method with double electron-attaching (DEA) EOM operators of 2 p and 3 p 1 h types, EOM-DEA-CCSD. This ansatz, suitable for treating electronic structure patterns that can be described as two-electrons-in-many orbitals, represents a useful addition to the EOM-CC family of methods. We analyze the performance of EOM-DEA-CCSD for energy differences and molecular properties. By considering reduced quantities, such as state and transition one-particle density matrices, we compare EOM-DEA-CCSD wave functions with wave functions computed by other EOM-CCSD methods. The benchmarks illustrate that EOM-DEA-CCSD is capable of treating diradicals, bond-breaking, and some types of conical intersections.
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Gulania, Sahil, Kjønstad, Eirik F., Stanton, John F., Koch, Henrik, Krylov, Anna I.. 2021-03-19. Equation-of-motion coupled-cluster method with double electron-attaching operators: Theory, implementation, and benchmarks. https://doi.org/10.1063/5.0041822
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