PaperPanorama

Nuclear Theory·nucl-th

Friday·December 12, 2014

4 papers2 primary·2 cross-listed

  1. 01

    [Submitted on 11 Dec 2014]

    Microscopic description of quadrupole collectivity in neutron-rich nuclei across the N=126 shell closure

    R. Rodriguez-Guzman · L.M. Robledo · M.M. Sharma

    The quadrupole collectivity in Nd, Sm, Gd, Dy, Er, Yb, Hf and W nuclei with neutron numbers 122 N 156 is studied, both at the mean field level and beyond, using the Gogny energy density functional. Besides the robustness of the N=126 neutron shell closure, it is shown that the onset of static deformations in those isotopic chains with increasing neutron number leads to an enhanced stability and further extends the corresponding two-neutron driplines far beyond what could be expected from spherical calculations. Independence of the mean field predictions with respect to the particular version of the Gogny energy density functional employed is demonstrated by comparing results based on the D1S and D1M parameter sets. Correlations beyond mean field are taken into account in the framework of the angular momentum projected generator coordinate method calculation. It is shown that N=126 remains a robust neutron magic number when dynamical effects are included. The analysis of the collective wave functions, average deformations and excitation energies indicate that, with increasing neutron number, the zero-point quantum corrections lead to dominant prolate configurations in the 0, 0, 2 and 2 states of the studied nuclei. Moreover, those dynamical deformation effects provide an enhanced stability that further supports the mean field predictions, corroborating a shift of the r-process path to higher neutron numbers. Beyond mean field calculations provide a smaller shell gap at N=126 than the mean field one in good agreement with previous theoretical studies. However, the shell gap still remains strong enough in the two-neutron driplines.

    Comments:
    17 pages
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    1412.3651 [pdf]
    EPJA(2015)·6 citations
  2. 02

    [Submitted on 11 Dec 2014]

    Dilepton Production in Transport-based Approaches

    Janus Weil🇩🇪 · Stephan Endres🇩🇪 · Hendrik van Hees🇩🇪 · Marcus Bleicher🇩🇪 · Ulrich Mosel🇩🇪

    We investigate dilepton production in transport-based approaches and show that the baryon couplings of the meson represent the most important ingredient for understanding the measured dilepton spectra. At SIS energies, the baryon resonances naturally play a major role and affect already the vacuum spectra via Dalitz-like contributions, which can be captured well in transport simulations. Recent pion-beam measurements at GSI will help to constrain the properties of the involved resonances further.

    Comments:
    4 pages, 2 figures; Proceedings of Hot Quarks 2014
    Subjects:
    Nuclear Theory (nucl-th); High Energy Physics — Phenomenology (hep-ph); Nuclear Experiment (nucl-ex)
    arXiv:
    1412.3733 [pdf]
    J.Phys.Conf.Ser.(2015)·3 citations

Affiliations

first authorsco-authorsvia INSPIRE