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A local framework for calculating coupled cluster singles and doubles excitation energies (LoFEx-CCSD).

Authors :
Baudin, Pablo
Bykov, Dmytro
Liakh, Dmitry
Ettenhuber, Patrick
Kristensen, Kasper
Source :
Molecular Physics; 2017, Vol. 115 Issue 17/18, p2135-2144, 10p
Publication Year :
2017

Abstract

The recently developed Local Framework for calculating Excitation energies (LoFEx) is extended to the coupled cluster singles and doubles (CCSD) model. In the new scheme, a standard CCSD excitation energy calculation is carried out within a reduced excitation orbital space (XOS), which is composed of localised molecular orbitals and natural transition orbitals determined from time-dependent Hartree–Fock theory. The presented algorithm uses a series of reduced second-order approximate coupled cluster singles and doubles (CC2) calculations to optimise the XOS in a black-box manner. This ensures that the requested CCSD excitation energies have been determined to a predefined accuracy compared to a conventional CCSD calculation. We present numerical LoFEx-CCSD results for a set of medium-sized organic molecules, which illustrate the black-box nature of the approach and the computational savings obtained for transitions that are local compared to the size of the molecule. In fact, for such local transitions, the LoFEx-CCSD scheme can be applied to molecular systems where a conventional CCSD implementation is intractable. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00268976
Volume :
115
Issue :
17/18
Database :
Complementary Index
Journal :
Molecular Physics
Publication Type :
Academic Journal
Accession number :
124896094
Full Text :
https://doi.org/10.1080/00268976.2017.1290836