English

Phase-space distributions of nuclear short-range correlations

Nuclear Theory 2021-07-27 v2 Nuclear Experiment

Abstract

Nuclear short-range correlations (SRCs) induce high-momentum/high-energy fluctuations in the nuclear medium. In order to assess their impact on nuclear bulk properties, like nuclear radii and kinetic energies, it is instrumental to determine how SRCs are distributed in phase space as this sheds light on the connection between their appearance in coordinate and momentum space. Using the lowest-order correlation operator approximation (LCA) to include SRC, we compute two-dimensional nuclear Wigner quasiprobability distributions w(r,k)w(r, k) to locate those (r,k)({r}, {k}) phase-space regions that are most heavily impacted by SRCs. The SRC-induced high-momentum components find their origin in a radial range that is confined to the nuclear interior. Significant SRCs strength is generated in the full momentum range 0k5 fm10 \leq k \lesssim 5 ~\text{fm}^{-1} covered in this work, but below the Fermi momentum those are dwarfed by the mean-field contributions. As an application of w(r,k)w(r, k), we focus on the radial dependence of the kinetic energy TT and the momentum dependence of the radius rrmsr_{\text{rms}} for the symmetric nuclei 12^{12}C, 40^{40}Ca and the asymmetric nucleus 48^{48}Ca. The kinetic energy almost doubles after including SRCs, with the largest increase occurring in the nuclear interior r2r \lesssim 2 fm. The momentum dependence of the rrmsr_{\text{rms}} teaches that the largest contributions stem from k2k \lesssim 2 fm1^{-1}, where the SRCs induce a slight reduction of the order of a few percent. The SRCs systematically reduce the 48^{48}Ca neutron skin by an amount that can be 10\%.

Keywords

Cite

@article{arxiv.2106.01249,
  title  = {Phase-space distributions of nuclear short-range correlations},
  author = {W. Cosyn and J. Ryckebusch},
  journal= {arXiv preprint arXiv:2106.01249},
  year   = {2021}
}

Comments

10 pages, 6 figures; revised version with updated Fig.1, matches published version

R2 v1 2026-06-24T02:45:25.472Z