PaperPanorama

Nuclear Theory·nucl-th

Thursday·October 14, 2021

4 papers1 primary·3 cross-listed

  1. 02

    A Nuclear Equation of State Inferred from Stellar r-process Abundances

    Erika M. Holmbeck · Richard O'Shaughnessy · Vera Delfavero · Krzysztof Belczynski

    Binary neutron star mergers (NSMs) have been confirmed as one source of the heaviest observable elements made by the rapid neutron-capture (r-) process. However, modeling NSM outflows -- from the total ejecta masses to their elemental yields -- depends on the unknown nuclear equation of state (EOS) that governs neutron-star structure. In this work, we derive a phenomenological EOS by assuming that NSMs are the dominant sources of the heavy element material in metal-poor stars with r-process abundance patterns. We start with a population synthesis model to obtain a population of merging neutron star binaries and calculate their EOS-dependent elemental yields. Under the assumption that these mergers were responsible for the majority of r-process elements in the metal-poor stars, we find parameters representing the EOS for which the theoretical NSM yields reproduce the derived abundances from observations of metal-poor stars. For our proof-of-concept assumptions, we find an EOS that is slightly softer than, but still in agreement with, current constraints, e.g., by the Neutron Star Interior Composition Explorer, with ~km and of ~M(statistical uncertainties, neglecting modeling systematics).

    astro-ph.HEnucl-thApJ(2022)·7 citations
  2. 03

    Temperature and Density Conditions for Alpha Clustering in Excited Self-Conjugate Nuclei

    Bernard Borderie · Adriana Raduta · Enrico De Filippo · Elena Geraci · Nicolas Le Neindre · Giuseppe Cardella · Gaetano Lanzalone · Ivano Lombardo · Olivier Lopez · Concettina Maiolino · Angelo Pagano · Massimo Papa and 3 other authors

    Starting from experimental studies on alpha-clustering in excited self-conjugate nuclei (from O to Si), temperature and density conditions for such a clustering are determined. Measured temperatures have been found in the range of 5.5 - 6.0 MeV whereas density values of 0.3 - 0.4 times the saturation density are deduced, i.e., 0.046 to 0.062 . Such a density domain is also predicted by constrained self-consistent mean field calculations. These results constitute a benchmark for alpha clustering from self-conjugate nuclei in relation to descriptions of stellar evolution and supernovae.

    nucl-exnucl-thSymmetry(2021)·0 citations
  3. 04

    Fixed particle number constraint in a simple model of a thermal expanding system and collisions at the LHC

    M.D. Adzhymambetov🇺🇦 · S.V. Akkelin🇺🇦 · Yu.M. Sinyukov🇺🇦

    Two-boson momentum correlations at fixed particle number constraint are studied in a simple analytically solvable model of a thermal expanding system. We show that the increase of expansion rate, as well as increase of particle multiplicity, enhances the ground-state contribution to particle momentum spectra and leads to suppression of the Bose-Einstein momentum correlations. The relations of these findings to the multiplicity-dependent measurements of the Bose-Einstein momentum correlations in high-multiplicity collision events at the LHC are discussed.

    hep-phhep-exnucl-exnucl-thPRD(2022)·1 citation

Affiliations

first authorsco-authorsvia INSPIRE