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First-order density matrix as a functional of the ground-state electron density for harmonic confinement of two electrons which also interact harmonically

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Publication:1852586
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DOI10.1016/S0375-9601(02)01598-0zbMath1005.81529OpenAlexW2032420785MaRDI QIDQ1852586

Norman H. March

Publication date: 6 January 2003

Published in: Physics Letters. A (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/s0375-9601(02)01598-0

zbMATH Keywords

two-electron atomnon-local relations


Mathematics Subject Classification ID

Atomic physics (81V45)


Related Items

Correlated and idempotent Dirac first-order density matrices with identical diagonal fermion density: a route to extract a one-body potential energy in TDDFT, A proposed family of variationally correlated first-order density matrices for spin-polarized three-electron model atoms, Wave functions and low-order density matrices for a class of two-electron `artificial atoms' embracing Hookean and Moshinsky models



Cites Work

  • The Statistical Interpretation of Quantum Mechanics
  • Pair function at coincidence and ground-state energy for interacting systems of two fermions with isotropic harmonic confinement and antiparallel spins
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