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Phys. Rev. A 34, 4586–4590 (1986)

Various functionals for the kinetic energy density of an atom or molecule

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Weitao Yang, Robert G. Parr, and Chengteh Lee
Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27514

Received 21 July 1986; published in the issue dated December 1986

Various approximate density functionals for the kinetic energy density of atoms and molecules are analyzed. These include the results of a gradient expansion to first and second orders and a form recently derived from a new Green’s function approximation [W. Yang, preceding paper, Phys. Rev. A 34, 4575 (1986)]. All the approximate functionals studied diverge to minus infinity at a nucleus, due to the 2ρ term that is in them, while the exact functional is positive and finite everywhere. Away from nuclei, however, the Hartree-Fock results are well reproduced, including the atomic shell structure. New functionals are proposed to correct the divergent behavior, and accurate total kinetic energy values are obtained from a new formula for kinetic energy density tMP(r)=Ckρ(r)5/3 +(1/72)‖∇ρ(r)2/ρ(r)+( 1/12)2ρ(r), with a divergence correction.

© 1986 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevA.34.4586
DOI:
10.1103/PhysRevA.34.4586
PACS:
31.10.+z, 31.20.Lr, 31.15.+q, 05.30.Fk