PaperPanorama

Nuclear Theory·nucl-th

Thursday·October 26, 2017

10 papers5 primary·5 cross-listed

  1. 01

    Tubes, Mono Jets, Squeeze Out and CME

    Ron Longacre🇺🇸

    Glasma Flux Tubes, Mono Jets with squeeze out flow around them plus the Chiral Magnetic Effect(CME) are physical phenomenon that generate two particle correlation with respect to the reaction plane in mid-central 20\% to 30\% Au-Au collision = 200.0 GeV measured at RHIC.

    nucl-th0 citations
  2. 02

    Neutron-proton pairing correlations in a single shell model

    A. Márquez Romero · J. Dobaczewski · A. Pastore

    The long standing problem of neutron-proton pairing correlations is revisited by employing the Hartree-Fock-Bogoliubov formalism with neutron-proton mixing in both the particle-hole and particle-hole channels. We compare numerical calculations performed within this method with an exact pairing model based on the algebra. The neutron-proton mixing is included in our calculations by performing rotations in the isospin space using the isocranking technique.

    nucl-thActa Phys.Polon.B(2018)·2 citations
  3. 03

    Phonon-particle coupling effects in odd-even mass differences of semi-magic nuclei

    E.E. Saperstein · M. Baldo · S.S. Pankratov · S.V. Tolokonnikov

    A method to evaluate the particle-phonon coupling (PC) corrections to the single-particle energies in semi-magic nuclei, based on a direct solving the Dyson equation with PC corrected mass operator, is used for finding the odd-even mass difference between 18 even Pb isotopes and their odd-proton neighbors. The Fayans energy density functional (EDF) DF3-a is used which gives rather high accuracy of the predictions for these mass differences already on the mean-field level, with the average deviation from the existing experimental data equal to 0.389 MeV. It is only a bit worse than the corresponding value of 0.333 MeV for the Skyrme EDF HFB-17 which belongs to a family of Skyrme EDFs with the highest overall accuracy in describing the nuclear masses. Account for the PC corrections induced by the low-laying phonons and significantly diminishes the deviation of the theory from the data till 0.218 MeV.

    nucl-thJETP Lett.(2017)·3 citations
  4. 04

    Nucleon matter equation of state, particle number fluctuations, and shear viscosity within UrQMD box calculations

    A. Motornenko🇩🇪 · L. Bravina🇳🇴 · M. I. Gorenstein🇺🇦 · A. G. Magner🇺🇦 · E. Zabrodin🇳🇴

    Properties of equilibrated nucleon system are studied within the Ultra-relativistic Quantum Molecular Dynamics (UrQMD) transport model. The UrQMD calculations are done within a finite box with periodic boundary conditions. The system achieves thermal equilibrium due to nucleon-nucleon elastic scattering. For the UrQMD equilibrium state, nucleon energy spectra, equation of state, particle number fluctuations, and shear viscosity are calculated. The UrQMD results are compared with both, statistical mechanics and Chapman-Enskog kinetic theory, for a classical system of nucleons with hard-core repulsion.

    nucl-thhep-phJ.Phys.G(2018)·7 citations
  5. 05

    Parameterization of the deuteron wave functions and form factors

    V. I. Zhaba🇺🇦

    Minimization of the number of numerically calculated coefficients for new analytical forms as a product of exponential function r1 by the sum of the exponential terms Ai*exp(-ai*r2) have been done. The optimum is N=10. Calculations have been done for realistic phenomenological Reid93 potential. Spherical S0 and quadrupole S2 form factors is parameterized by the coefficients for deuteron wave function in coordinate representation. The result t20(p) in wide area of momentas for Reid93 potential agreed well with the literature results for other potential nucleon-nucleon models, and with experimental datas of world collaborations and reviews. The obtained results will allow studying the deuteron electromagnetic structure, its form-factors, differential cross section of double scattering in more detail in future, and also for calculations the theoretical values of spin observables in dp- scattering.

    nucl-thWorld Scientific News Vol. 87, P. 222-232…·0 citations

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first authorsco-authorsvia INSPIRE