PaperPanorama

Nuclear Theory·nucl-th

Thursday·June 18, 2026

7 papers3 primary·4 cross-listed

  1. 01

    Universality and variability of the heavy r-process element abundance pattern from a nonequilibrium approach

    David Blaschke · Friedrich K. Röpke · Gerd Röpke

    A striking feature in the observed chemical composition of the majority of stars is the universality of the relative abundances of the heavy elements, although some outliers exist. We demonstrate that a nonequilibrium freeze-out approach provides a natural way of accounting for the typical abundance pattern and its variation. Here, we use a phenomenological method to characterize the coarse-grained distribution of heavy -process elements in several astrophysical objects. The Lagrange parameters show only minor fluctuations when comparing different stars. Larger deviations are observed in stars with low metallicity. The variations in the Lagrange parameters for these stars are presented. The determination of the Lagrange parameters can be instrumental in identifying possible sources for the formation of heavy elements. In particular, density fluctuations are considered as a source for the production of heavy elements in the early Universe.

    nucl-thastro-ph.SRFront.Astron.Space Sci.(2025)·1 citation
  2. 02

    Vortex Nucleons as Partial-Wave Filters in Nucleon--Nucleon Scattering

    Jinniu Hu · Ying Zhang · Hong Shen

    We propose vortex nucleon scattering as an angular-momentum-resolved probe of nucleon--nucleon partial waves. Using the standard partial-wave matrix as input, we show that an on-axis vortex incident state with a fixed orbital angular-momentum projection imposes the direct selection rule on the initial nucleon--nucleon partial waves. As a result, the initial wave is excluded for , while both the initial and waves are excluded for . The underlying phase shifts are not modified. Instead, the vortex external state changes how the ordinary partial waves are projected into the scattering amplitude. We further analyze off-axis scattering, where the displacement of the target from the vortex axis introduces Bessel-function weights and partially relaxes the on-axis selection rule. These results suggest that vortex nucleons can provide a new experimental handle on the partial-wave content of the strong nucleon--nucleon interaction.

    nucl-th0 citations
  3. 03

    Geometric structure of two-neutron halo nuclei from Efimov physics at the unitary limit

    R. M. Francisco🇧🇷 · D. S. Rosa🇧🇷 · T. Frederico🇧🇷 · M. T. Yamashita🇧🇷

    We investigate the geometric structure of two-neutron halo nuclei from the perspective of Efimov physics. Using the analytic three-body wave function obtained from the Faddeev equations in the unitary limit, we explore the connection between Efimov universality and the spatial configuration of these weakly bound systems. The internal geometry is quantified through probability densities, root-mean-square interparticle distances and characteristic opening angles, evaluated for different neutron-core mass ratios. Our results reveal a universal trend in the geometry of s-wave dominated halo nuclei, reflecting the universal correlations characteristic of the Efimov-like regime.

    nucl-thFew Body Syst.(2026)·0 citations

Affiliations

first authorsco-authorsvia INSPIRE