Title of article :
Interplay of three-body interactions in the EOS of nuclear matter Original Research Article
Author/Authors :
W. Zuo، نويسنده , , Miguel A. Lejeune، نويسنده , , U. Lombardo، نويسنده , , J.F. Mathiot، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
13
From page :
418
To page :
430
Abstract :
The equation of state of symmetric nuclear matter has been investigated within Brueckner approach adopting the charge-dependent Argonne V18 two-body force plus a microscopic three-body force based on a meson-exchange model. The effects on the equation of state of the individual processes giving rise to the three-body force are explored up to high baryonic density. It is found that the major role is played by the competition between the strongly repulsive (σ,ω)-exchange term with virtual nucleon–antinucleon excitation and the large attractive contribution due to (σ,ω) exchange with View the MathML source resonance excitation. The net result is a repulsive term which shifts the saturation density corresponding to the only two-body force much closer to the empirical value, while keeping constant the saturation energy per particle. The contribution from (π,ρ)-exchange 3BF is shown to be attractive and rather small. The analysis of the separate three-body force contributions allows to make a comparison with the prediction of Dirac–Brueckner approach which is supposed to incorporate via the dressed Dirac spinors the same virtual nucleon–antinucleon excitations as in the present three-body force. The numerical results suggest that the three-body force components missing from the Dirac–Brueckner approach are not negligible, especially at high density. The calculation of the nuclear mean field and the effective mass shows that the three-body force affects to a limited extent such properties.
Keywords :
Three-body force , Nuclear matter , EOS , Brueckner theory
Journal title :
Nuclear physics A
Serial Year :
2002
Journal title :
Nuclear physics A
Record number :
1198478
Link To Document :
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