Coupled-cluster theory for the ground state and for excitations

Fuente: arXiv
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Autori principali: Grüneis, Andreas, Moerman, Evgeny, Scheffler, Matthias, Shen, Tonghao, Zhang, Igor Ying
Natura: Preprint
Pubblicazione: 2024
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author Grüneis, Andreas
Moerman, Evgeny
Scheffler, Matthias
Shen, Tonghao
Zhang, Igor Ying
author_facet Grüneis, Andreas
Moerman, Evgeny
Scheffler, Matthias
Shen, Tonghao
Zhang, Igor Ying
contents In the molecular quantum chemistry community, coupled-cluster (CC) methods are well-recognized for their systematic convergence and reliability. The extension of the theory to extended systems has been comparably recent, so that developments and studies of periodic CC methods for both the ground-state and for excited states are still active fields of research and provide valuable benchmark data when the reliability of density functional approximations is questionable. In this contribution we describe the CC-aims interface between the FHI-aims and the Cc4s software packages. This linkage makes a variety of correlated wave function-based ground-state methods including Møller-Plesset perturbation theory (MP2), the random-phase approximation (RPA) and the gold-standard of quantum chemistry CCSD(T) method for both molecular and periodic applications accessible. This contribution discusses these ground-state methods for clusters and molecules, as well as for periodic systems. In particular, we discuss recent advancements and the implementation of the equation-of-motion CC method for the calculation of ionization (IP-EOM-CCSD) and electron attachment (EA-EOM-CCSD) processes. Open questions and routes to solutions are discussed as well.
format Preprint
id arxiv_https___arxiv_org_abs_2410_22798
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coupled-cluster theory for the ground state and for excitations
Grüneis, Andreas
Moerman, Evgeny
Scheffler, Matthias
Shen, Tonghao
Zhang, Igor Ying
Chemical Physics
Materials Science
In the molecular quantum chemistry community, coupled-cluster (CC) methods are well-recognized for their systematic convergence and reliability. The extension of the theory to extended systems has been comparably recent, so that developments and studies of periodic CC methods for both the ground-state and for excited states are still active fields of research and provide valuable benchmark data when the reliability of density functional approximations is questionable. In this contribution we describe the CC-aims interface between the FHI-aims and the Cc4s software packages. This linkage makes a variety of correlated wave function-based ground-state methods including Møller-Plesset perturbation theory (MP2), the random-phase approximation (RPA) and the gold-standard of quantum chemistry CCSD(T) method for both molecular and periodic applications accessible. This contribution discusses these ground-state methods for clusters and molecules, as well as for periodic systems. In particular, we discuss recent advancements and the implementation of the equation-of-motion CC method for the calculation of ionization (IP-EOM-CCSD) and electron attachment (EA-EOM-CCSD) processes. Open questions and routes to solutions are discussed as well.
title Coupled-cluster theory for the ground state and for excitations
topic Chemical Physics
Materials Science
url https://arxiv.org/abs/2410.22798