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
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
Journal title :
Nuclear physics A