PaperPanorama

Nuclear Theory·nucl-th

Friday·September 21, 2018

5 papers2 primary·3 cross-listed

  1. 01

    Natural orbitals for ab initio no-core shell model calculations

    Alexander Tichai🇩🇪 · Julius Müller🇩🇪 · Klaus Vobig🇩🇪 · Robert Roth🇩🇪

    We explore the impact of optimizations of the single-particle basis on the convergence behavior and robustness of ab initio no-core shell model calculations. Our focus is on novel basis sets defined by the natural orbitals of a correlated one-body density matrix that is obtained in second-order many-body perturbation theory. Using a perturbatively improved density matrix as starting point informs the single-particle basis about the dominant correlation effects on the global structure of the many-body state, while keeping the computational cost for the basis optimization at a minimum. Already the comparison of the radial single-particle wavefunctions reveals the superiority of the natural-orbital basis compared to a Hartree-Fock or harmonic oscillator basis, and it highlights pathologies of the Hartree-Fock basis. We compare the model-space convergence of energies, root-mean-square radii, and selected electromagnetic observables with all three basis sets for selected p-shell nuclei using chiral interactions with explicit three-nucleon terms. In all cases the natural-orbital basis provides the fastest and most robust convergence, making it the most efficient basis for no-core shell model calculations. As an application we present no-core shell model calculations for the ground-state energies of all oxygen isotopes and assess the accuracy of the normal-ordered two-body approximation of the three-nucleon interaction in the natural-orbital basis.

    nucl-thPRC(2019)·67 citations
  2. 02

    Transport responses from rate of decay and scattering processes in the Nambu--Jona-Lasinio model

    Sabyasachi Ghosh🇮🇳 · Fernando E. Serna🇧🇷 · Aman Abhishek🇮🇳 · Gastao Krein🇧🇷 · Hiranmaya Mishra🇮🇳

    We have calculated quark and anti-quark relaxation time by considering different possible elastic and inelastic scatterings in the medium. Comparative role of these elastic and inelastic scatterings on different transport coefficients are explored. The quark-meson effective interaction Lagrangian density in the framework of Nambu--Jona-Lasinio model is used for calculating both type of scatterings. Owing to a kinetic threshold, inelastic scatterings can only exist beyond the Mott line in temperature and chemical potential plane, whereas elastic scatterings occur in the entire plane. Interestingly, the strength of inelastic scatterings near and above Mott line becomes so strong that medium behaves like a perfect fluid, in that all transport coefficients become very small.

    nucl-thhep-phPRD(2019)·22 citations
  3. 03

    Bulk observables in the LHC 5.02 TeV Pb+Pb collisions within the integrated HydroKinetic Model

    V. M. Shapoval🇺🇦 · Yu. M. Sinyukov🇺🇦

    The paper is devoted to the description and prediction of various bulk observables in the Pb+Pb collisions at the LHC energy TeV within the integrated hydrokinetic model (iHKM). Sensitivity of the results to the choice of the appropriate model parameter values is also investigated. It is found that changing of the relaxation time and the rate of thermalization, which characterize the pre-thermal stage of the matter evolution, as well as switching to another equation of state at the hydrodynamic stage and the corresponding hadronization temperature, does not destroy the results, if simultaneously one provides an appropriate adjusting of the initial time for the superdense matter formation and related maximal initial energy density.

    hep-phnucl-exnucl-thPRC(2019)·17 citations
  4. 04

    New narrow nucleon resonances and within the chiral quark-soliton model

    Ghil-Seok Yang🇰🇷 · Hyun-Chul Kim🇰🇷

    We investigate the strong and radiative decay widths of the narrow nucleon resonances and within the framework of the SU(3) chiral quark-soliton model. All the relevant parameters are taken from those used to describe the properties of the baryon octet and decuplet in previous works. The masses of the antidecuplet nucleon and the eikosiheptaplet (27-plet) nucleon with spin 3/2 are determined respectively to be and . The decay width for is found to be approximately three times larger than that for . The width of the decay is even about 31 times larger than that of . The ratio of the radiative decays for is obtained to be which explains very well the neutron anomaly. In contrast, we find , which indicates that the production of is more likely to be observed in the proton channel. We also examined the decay modes of these narrow nucleon resonances with the strangeness hadrons involved.

    hep-phnucl-exnucl-thPTEP(2019)·6 citations
  5. 05

    Pion constituent quarks couplings strong form factors: a dynamical approach

    Fabio L. Braghin🇧🇷

    Form factors for pions interactions with constituent quarks are investigated as the leading effective couplings obtained from a one loop background field method applied to a global color model. Two pion field definitions are considered and the resulting eleven form factors are expressed in terms of components of the quark and gluon propagators that compose only two momentum dependent functions. A momentum dependent Goldberger Treiman relation is also obtained as one of the ratios between the form factors. The resulting form factors with pion momenta up to 1.5 GeV are exhibited for different quark effective masses and two different non-perturbative gluon propagators and they present similar behavior to fittings of experimental data from nucleons form factors. The corresponding pseudoscalar averaged quadratic radii (a.q.r.) and correction to the axial a.q.r. are presented as functions of the sea quark effective mass, being equal respectively to the scalar and vector ones at the present level of calculation.

    hep-phnucl-thPRD(2019)·12 citations

Affiliations

first authorsco-authorsvia INSPIRE