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eT 1.0: an open source electronic structure program with emphasis on coupled cluster and multilevel methods

Authors :
Folkestad, Sarai D.
Kjønstad, Eirik F.
Myhre, Rolf H.
Andersen, Josefine H.
Balbi, Alice
Coriani, Sonia
Giovannini, Tommaso
Goletto, Linda
Haugland, Tor S.
Hutcheson, Anders
Høyvik, Ida-Marie
Moitra, Torsha
Paul, Alexander C.
Scavino, Marco
Skeidsvoll, Andreas S.
Tveten, Åsmund H.
Koch, Henrik
Publication Year :
2020

Abstract

The eT program is an open source electronic structure package with emphasis on coupled cluster and multilevel methods. It includes efficient spin adapted implementations of ground and excited singlet states, as well as equation of motion oscillator strengths, for CCS, CC2, CCSD, and CC3. Furthermore, eT provides unique capabilities such as multilevel Hartree-Fock and multilevel CC2, real-time propagation for CCS and CCSD, and efficient CC3 oscillator strengths. With a coupled cluster code based on an efficient Cholesky decomposition algorithm for the electronic repulsion integrals, eT has similar advantages as codes using density fitting, but with strict error control. Here we present the main features of the program and demonstrate its performance through example calculations. Because of its availability, performance, and unique capabilities, we expect eT to become a valuable resource to the electronic structure community.<br />Comment: 31 pages and 10 figures - supplementary information included in the uploaded files

Subjects

Subjects :
Physics - Chemical Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2002.05631
Document Type :
Working Paper
Full Text :
https://doi.org/10.1063/5.0004713