Exact potential-phase relation for the ground state of the C atom

Á. Nagy and N. H. March
Phys. Rev. A 40, 554 – Published 1 July 1989
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Abstract

Exact density-phase relations have been derived for a three-level independent-particle problem. The density can explicitly be written in terms of the phase functions ϑ and cphi and their derivatives. The Euler equation of the density-functional theory has been derived for the ground state of the C atom. The one-body potential V can be obtained from the phase functions ϑ and cphi. The differential form of the virial theorem of March and Young [Nucl. Phys. 12, 237 (1959)] has been generalized for particles moving in a common local potential V and having different azimuthal quantum numbers.

  • Received 3 January 1989

DOI:https://doi.org/10.1103/PhysRevA.40.554

©1989 American Physical Society

Authors & Affiliations

Á. Nagy

  • Institute of Theoretical Physics, Kossuth Lajos University, Debrecen 4010, Hungary

N. H. March

  • Department of Theoretical Chemistry, University of Oxford, 5 South Parks Road, Oxford, OX13UB, England

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Vol. 40, Iss. 2 — July 1989

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