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采用新型中间哈密顿量福克空间耦合簇方法的三电子附着

Triple Electron Attachments with a New Intermediate-Hamiltonian Fock-Space Coupled-Cluster Method.

作者信息

Hu Yanmei, Wang Zhifan, Wang Fan, Meissner Leszek

机构信息

Institute of Atomic and Molecular Physics, Key Laboratory of High Energy Density Physics and Technology, Ministry of Education, Sichuan University, Chengdu 610065, People's Republic of China.

College of Chemistry and Life Science, Chengdu Normal University, Chengdu 611130, People's Republic of China.

出版信息

J Phys Chem A. 2024 Sep 26;128(38):8279-8291. doi: 10.1021/acs.jpca.4c03772. Epub 2024 Sep 13.

DOI:10.1021/acs.jpca.4c03772
PMID:39270002
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11440602/
Abstract

The implementation of a new intermediate-Hamiltonian Fock-space coupled-cluster (IHFSCC) scheme for the (3,0) sector of the Fock space is reported. In this IHFSCC approach, the three-body contributions in the cluster operator corresponding to the (3,0) sector of the Fock space are considered, while and at the (1,0) and (2,0) level only include one- and two-body operators. By introducing a suitable partition of the wave operator, the intermediate Hamiltonian, which only depends on the two-body operator of S, is obtained. and are not required within this new IHFSCC scheme, and a large reference space can be possibly employed. The performance of this (3,0) IHFSCC method in calculating triple ionization potentials and excitation energies for atoms and cations with a ground p configuration as well as adiabatic excitation energies for some molecules is investigated. The effect of the number of active virtual orbitals and three different types of orbitals, i.e., reference orbitals, restricted open-shell Hartree-Fock orbitals (ROHF) of the target systems, and canonicalized ROHF orbitals, on IHFSCC results, is also studied. Our calculations indicate that reasonable results can be achieved with this (3,0) IHFSCC method when a minimal reference space is employed. Further increasing the number of active orbitals does not necessarily improve the results. In addition, the IHFSCC results using canonicalized ROHF orbitals generally agree well with reference values, and they are not very sensitive to the number of active orbitals compared with results using the reference orbitals. The new (3,0) IHFSCC method can be applied to open-shell systems with three unpaired electrons with reasonable accuracy at a relatively low computational cost.

摘要

报道了一种用于福克空间(3,0)扇区的新型中间哈密顿福克空间耦合簇(IHFSCC)方案的实现。在这种IHFSCC方法中,考虑了与福克空间(3,0)扇区相对应的簇算符中的三体贡献,而(1,0)和(2,0)能级的簇算符仅包括单体和二体算符。通过引入波算符的合适划分,得到了仅依赖于S的二体算符的中间哈密顿量。在这种新的IHFSCC方案中不需要 和 ,并且可以使用大的参考空间。研究了这种(3,0) IHFSCC方法在计算具有基态p构型的原子和阳离子的三重电离势和激发能以及一些分子的绝热激发能方面的性能。还研究了活性虚轨道数以及三种不同类型的轨道,即目标系统的参考轨道、受限开壳层哈特里-福克轨道(ROHF)和正则化ROHF轨道,对IHFSCC结果的影响。我们的计算表明,当使用最小参考空间时,这种(3,0) IHFSCC方法可以得到合理的结果。进一步增加活性轨道数不一定能改善结果。此外,使用正则化ROHF轨道的IHFSCC结果通常与参考值吻合良好,并且与使用参考轨道的结果相比,它们对活性轨道数不太敏感。新的(3,0) IHFSCC方法可以以相对较低的计算成本以合理的精度应用于具有三个未配对电子的开壳层系统。

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本文引用的文献

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Intermediate Hamiltonian Fock-space coupled-cluster theory for excitation energies, double ionization potentials, and double electron attachments with spin-orbit coupling.用于激发能、双电离势和具有自旋轨道耦合的双电子附着的中间哈密顿量福克空间耦合簇理论。
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