About

Log in?

DTU users get better search results including licensed content and discounts on order fees.

Anyone can log in and get personalized features such as favorites, tags and feeds.

Log in as DTU user Log in as non-DTU user No thanks

DTU Findit

Journal article

The Second-Order-Polarization-Propagator-Approximation (SOPPA) in a four-component spinor basis

From

Department of Chemistry, Technical University of Denmark1

University of Edinburgh2

Aarhus University3

University of Southern Denmark4

University of Copenhagen5

A theoretical framework for understanding molecular structures is crucial for the development of new technologies such as catalysts or solar cells. Apart from electronic excitation energies, however, only spectroscopic properties of molecules consisting of lighter elements can be computationally described at a high level of theory today since heavy elements require a relativistic framework, and thus far, most methods have only been derived in a non-relativistic framework.

Important new technologies such as those mentioned above require molecules that contain heavier elements, and hence, there is a great need for the development of relativistic computational methods at a higher level of accuracy. Here, the Second-Order-Polarization-Propagator-Approximation (SOPPA), which has proven to be very successful in the non-relativistic case, is adapted to a relativistic framework.

The equations for SOPPA are presented in their most general form, i.e., in a non-canonical spin-orbital basis, which can be reduced to the canonical case, and the expressions needed for a relativistic four-component SOPPA are obtained. The equations are one-index transformed, giving more compact expressions that correspond to those already available for the four-component RPA.

The equations are ready for implementation in a four-component quantum chemistry program, which will allow both linear response properties and excitation energies to be calculated relativistically at the SOPPA level.

Language: English
Publisher: AIP Publishing LLC
Year: 2020
Pages: 134113
ISSN: 10897690 and 00219606
Types: Journal article
DOI: 10.1063/5.0002389
ORCIDs: 0000-0001-8187-6052 , Schnack-Petersen, Anna Kristina , 0000-0001-9848-7010 , 0000-0002-8743-7381 and 0000-0003-4812-0522

DTU users get better search results including licensed content and discounts on order fees.

Log in as DTU user

Access

Analysis