Title of article
Quasiparticle interaction in nuclear matter with chiral three-nucleon forces
Author/Authors
J.W. Holt، نويسنده , , N. Kaiser، نويسنده , , W. Weise، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2012
Pages
16
From page
61
To page
76
Abstract
We derive the effective interaction between two quasiparticles in symmetric nuclear matter resulting from the leading-order chiral three-nucleon force. We restrict our study to the image Landau parameters of the central quasiparticle interaction computed to first order. We find that the three-nucleon force provides substantial repulsion in the isotropic spin- and isospin-independent component image of the interaction. This repulsion acts to stabilize nuclear matter against isoscalar density oscillations, a feature which is absent in calculations employing low-momentum two-nucleon interactions only. We find a rather large uncertainty for the nuclear compression modulus image due to a sensitive dependence on the low-energy constant image. The effective nucleon mass image on the Fermi surface, as well as the nuclear symmetry energy β, receive only small corrections from the leading-order chiral three-body force. Both the anomalous orbital g-factor image and the Landau–Migdal parameter image (characterizing the spin–isospin response of nuclear matter) decrease with the addition of three-nucleon correlations. In fact, image remains significantly smaller than its value extracted from experimental data, whereas image still compares well with empirical values. The inclusion of the three-nucleon force results in relatively small p-wave (image) components of the central quasiparticle interaction, thus suggesting an effective interaction of short range.
Keywords
Fermi liquid theory , Nuclear matter , Three-body forces , Quasiparticle interaction , Chiral nuclear interactions
Journal title
Nuclear physics A
Serial Year
2012
Journal title
Nuclear physics A
Record number
1203965
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