PaperPanorama

Nuclear Theory·nucl-th

Wednesday·February 8, 2023

10 papers5 primary·5 cross-listed

  1. 01

    Skyrme-Hartree-Fock-Bogoliubov mass models on a 3D mesh. IIb. Fission properties of BSkG2

    Wouter Ryssens🇧🇪 · Guillaume Scamps🇧🇪 · Stephane Goriely🇧🇪 · Michael Bender🇫🇷

    Large-scale models of nuclear structure are currently the only way to provide consistent datasets for the many properties of thousands of exotic nuclei that are required by nucleosynthesis simulations. In [W.Ryssens et al., Eur. Phys. J. A 58, 246 (2022)], we recently presented the new BSkG2 model based on an energy density functional of the Skyrme type. Relying on a flexible three-dimensional coordinate representation of the nucleus, the model takes into account both triaxial deformation and time-reversal symmetry breaking. BSkG2 achieves a state-of-the-art global description of nuclear ground state (g.s.) properties and reproduces in particular the known masses with a root-mean-square (rms) deviation of 678 keV. Moving beyond g.s. properties, the model also reproduces all empirical values for the primary and secondary barriers as well as isomer excitation energies of actinide nuclei with rms deviations below 500 keV, i.e. with unprecedented accuracy. Here we discuss in detail the extension of our framework to the calculation of the fission barriers of 45 actinide nuclei, including odd-mass and odd-odd systems. We focus in particular on the impact of symmetry breaking which is key to the accuracy of the model: we allow systematically for axial, reflection and time-reversal symmetry breaking. The effect of the latter on the fission properties of odd-mass and odd-odd nuclei is small, but we find that allowing for shapes with triaxial or octupole deformation, as well as shapes with both, is crucial to achieving this accuracy. The numerical accuracy of our coordinate space approach, the variety of nuclear configurations explored and the simultaneous successful description of fission properties and known masses makes BSkG2 the tool of choice for the large-scale study of nuclear structure.

    nucl-thEPJA(2023)·16 citations
  2. 02

    The Los Alamos evaluation of Pu neutron-induced reactions in the fast energy range

    M. R. Mumpower · D. Neudecker · T. Kawano · M. Herman · N. Kleedtke · A. E. Lovell · I. Stetcu · P. Talou

    A major revision of the evaluation of Pu neutron-induced reaction cross sections is reported in the fast energy range. The evaluation starts at 2.5 keV incident neutron energy and has been extended up to 30 MeV. Several other notable changes are included in this evaluation since the release of ENDF/B-VIII.0 including the adoption of the Standards fission cross section, inclusion of new radiative capture data of Mosby et al., inclusion of the (n,2n) data of Meot et al., in addition to advances in the treatment of reaction modeling. In contrast to previous evaluation efforts, this evaluation is reproducible with detailed information stored chronologically utilizing a Git repository. The final evaluation results have been compiled into an ENDF-formatted file, which has been processed successfully through NJOY, checked for internal consistency, benchmarked versus older evaluations and validated against a suite of critical assemblies and pulsed-spheres.

    nucl-thnucl-ex4 citations
  3. 03

    Effect of the N3LO three-nucleon contact interaction on p-d scattering observables

    L. Girlanda🇮🇹 · E. Filandri🇮🇹 · A. Kievsky🇮🇹 · L.E. Marcucci🇮🇹 · M. Viviani🇮🇹

    A unitary transformation allows to remove redundant terms in the two-nucleon (2N) contact interaction at the fourth order (N3LO) in the low-energy expansion of Chiral Effective Field Theory. In so doing a three-nucleon (3N) interaction is generated. We express its short-range component in terms of five combinations of low-energy constants (LECs) parametrizing the N3LO 2N contact Lagrangian. Within a hybrid approach, in which this interaction is considered in conjunction with the phenomenological AV18 2N potential, we show that the involved LECs can be used to fit very accurate data on polarization observables of low-energy scattering, in particular the asymmetry. The resulting interaction is of the right order of magnitude for a N3LO contribution.

    nucl-thPRC(2023)·20 citations
  4. 04

    Universality Classes of Relativistic Fluid Dynamics: Foundations

    Lorenzo Gavassino🇺🇸 · Marcelo M. Disconzi🇺🇸 · Jorge Noronha🇺🇸

    A general organizing principle is proposed that can be used to derive the equations of motion describing the near-equilibrium dynamics of causal and thermodynamically stable relativistic systems. The latter are found to display some new type of universal behavior near equilibrium that allows them to be grouped into universality classes defined by their degrees of freedom, information content, and conservation laws. The universality classes expose a number of surprising equivalences between different theories, shedding new light on the near-equilibrium behavior of relativistic systems.

    nucl-thgr-qchep-thPRL(2024)·42 citations
  5. 05

    Predicting the neutrinoless double-beta decay matrix element of Xe using a statistical approach

    Mihai Horoi🇺🇸 · Andrei Neacsu🇷🇴 · Sabin Stoica🇷🇴

    Calculation of the nuclear matrix elements (NMEs) for double-beta decay is of paramount importance for guiding experiments and for analyzing and interpreting the experimental data, especially for the search of the neutrinoless double beta decay mode (). However, there are currently still large differences between the NME values calculated by different methods, hence a quantification of their uncertainties is very much required. In this paper we propose a statistical analysis of NME for the isotope, based on the interacting shell model, but using three independent effective Hamiltonians, emphasizing the range of the NMEs' most probable values and its correlations with observables that can be obtained from the existing nuclear data. Consequently, we propose a common probability distribution function for the NME, which has a range of (1.55 - 2.65) at 90\% confidence level, with a mean value of 1.99 and a standard deviation of 0.37.

    nucl-thhep-phPRC(2023)·24 citations

Affiliations

first authorsco-authorsvia INSPIRE