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Phys. Rev. C 59, 1906–1918 (1999)

Four-nucleon shell-model calculations in a Faddeev-like approach

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P. Navrátil* and B. R. Barrett
Department of Physics, University of Arizona, Tucson, Arizona 85721

Received 25 August 1998; published in the issue dated April 1999

We use equations for Faddeev amplitudes to solve the shell-model problem for four nucleons in a model space that includes up to 14ħΩ harmonic-oscillator excitations above the unperturbed ground state. Two- and three-body effective interactions derived from the Reid93 and Argonne V8’ nucleon-nucleon potentials are used in the calculations. Binding energies, excitation energies, point-nucleon radii, and electromagnetic and strangeness charge form factors for 4He are studied. The structure of the Faddeev-like equations is discussed and a formula for the matrix elements of the permutation operators in a harmonic-oscillator basis is given. The dependence on harmonic-oscillator excitations allowed in the model space and on the harmonic-oscillator frequency is investigated. It is demonstrated that the use of three-body effective interactions improves the convergence of the results.

© 1999 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevC.59.1906
DOI:
10.1103/PhysRevC.59.1906
PACS:
21.45.+v, 21.60.Cs, 21.30.Fe, 27.10.+h

*On leave of absence from the Institute of Nuclear Physics, Academy of Sciences of the Czech Republic, 250 68 Řež near Prague, Czech Republic.