PaperPanorama

Nuclear Theory·nucl-th

Monday·August 8, 2022

7 papers6 primary·1 cross-listed

  1. 01

    Inference of the sound speed and related properties of neutron stars

    Len Brandes🇩🇪 · Wolfram Weise🇩🇪 · Norbert Kaiser🇩🇪

    Information on the phase structure of strongly interacting matter at high baryon densities can be gained from observations of neutron stars and their detailed analysis. In the present work Bayesian inference methods are used to set constraints on the speed of sound in the interior of neutron stars, based on recent multi-messenger data in combination with limiting conditions from nuclear physics at low densities. Two general parametric representations are introduced for the sound speed in order to examine the independence with respect to choices for the parametrisation of Priors. Credible regions for neutron star properties are analysed, in particular with reference to the quest for possible phase transitions in cold dense matter. The evaluation of Bayes factors implies extreme evidence for a violation of the conformal bound, , inside neutron stars. Given the presently existing data base, it can be concluded that the occurrence of a first-order phase transition in the core of even a two-solar-mass neutron star is unlikely, while a continuous crossover cannot be ruled out. At the same time it is pointed out that the discovery of a superheavy neutron star with a mass would strengthen evidence for a phase change in the deep interior of the star.

    nucl-thastro-ph.HEgr-qchep-phPRD(2023)·84 citations
  2. 02

    Properties of Hot Quark Matter with Neutrino Confinement In the NJL Model

    G. S. Hajyan🇦🇲 · G. B. Alaverdyan🇦🇲

    The thermodynamic characteristics of hot -equilibrium three-flavor quark matter with neutrino confinement are studied in terms of the local SU(3) Nambu-Jona-Lasinio (NJL) model, which also accounts for the 't Hooft interaction which leads to mixing of quark flavors. For different temperatures MeV and baryon number densities fm the constituent quark masses, quark condensates, and relative contributions of individual types of particles to the pressure and chemical potentials of the constituent particles are determined. In order to determine the role of neutrinos in the hot quark matter, the pressures and energies in states with and without neutrinos are compared. Keywords: hot quark matter: neutrino confinement: NJL model: equation of state.

    nucl-thAstrophysics(2022)·2 citations
  3. 03

    Electroweak nuclear radii constrain the isospin breaking correction to

    Chien-Yeah Seng🇩🇪 · Mikhail Gorchtein🇩🇪

    We lay out a novel formalism to connect the isospin-symmetry breaking correction to the rates of superallowed nuclear beta decays, , to the isospin-breaking sensitive combinations of electroweak nuclear radii that can be accessed experimentally. We individuate transitions in the superallowed decay chart where a measurement of the neutron skin of a stable daughter even at a moderate precision could already help discriminating between models used to compute . We review the existing experimental situation and make connection to the existing and future experimental programs.

    nucl-thhep-exhep-phnucl-exPLB(2023)·35 citations
  4. 04

    The reaction in a dynamical coupled-channel approach

    Yu-Fei Wang🇩🇪 · Deborah Rönchen🇩🇪 · Ulf-G. Meißner🇩🇪 · Yu Lu🇬🇪 · Chao-Wei Shen🇩🇪 · Jia-Jun Wu🇨🇳

    A refined investigation on light flavor meson-baryon scatterings is performed using a dynamical coupled-channel approach, the Jülich-Bonn model, that respects unitartiy and analyticity constraints. The channel space of , , , , , and is extended by adding the final state. The spectra of and resonances are extracted in terms of complex poles of the scattering amplitudes, based on the result of a global fit to a worldwide collection of data, in the energy region from the threshold to center-of-mass energy GeV. A negative value of the elastic spin-averaged scattering length is extracted, questioning the existence of bound states of the meson in the nuclear matter.

    nucl-thhep-phnucl-exphysics.comp-phPRD(2022)·20 citations
  5. 05

    QCD in the cores of neutron stars

    Oleg Komoltsev🇳🇴

    I discuss why state-of-the art perturbative QCD calculations of the equation of state at large chemical potential that are reliable at asymptotically high densities constrain the same equation of state at neutron-star densities. I describe how these theoretical calculations affect the EOS at lower density. I argue that the ab-initio calculations in QCD offer significant information about the equation of state of the neutron-star matter, which is complementary to the current astrophysical observations.

    nucl-thastro-ph.HEhep-phActa Phys.Polon.Supp.(2023)·4 citations
  6. 06

    Thermal effects on nuclear matter properties

    Lucas Tonetto · Omar Benhar

    A quantitative description of the properties of hot nuclear matter will be needed for the interpretation of the available and forthcoming astrophysical data, providing information on the post merger phase of a neutron star coalescence. We have employed a recently developed theoretical model, based on a phenomenological nuclear Hamiltonian including two- and three-nucleon potentials, to study the temperature dependence of average and single-particle properties of nuclear matter relevant to astrophysical applications. The possibility to represent the results of microscopic calculations using simple and yet physically motivated parametrisations of thermal effects, suitable for use in numerical simulations of astrophysical processes, is also discussed.

    nucl-thastro-ph.HEPRD(2022)·9 citations

Affiliations

first authorsco-authorsvia INSPIRE