PaperPanorama

Nuclear Theory·nucl-th

Thursday·November 15, 2018

6 papers2 primary·4 cross-listed

  1. 01

    Number of Particles in Fission Fragments

    Marc Verriere · Nicolas Schunck · Toshihiko Kawano

    In current simulations of fission, the number of protons and neutrons in a given fission fragment is almost always obtained by integrating the total density of particles in the sector of space that contains the fragment. Because of the antisymmetry of the many-body wave function of the whole nucleus, this procedure systematically gives noninteger numbers of particles in the fragments. We introduce a novel sampling method to estimate rigorously the probability of finding protons and neutrons in a fission fragment without resorting to projectors, which can sometimes give unwieldy results. When applied on standard Hartree-Fock-Bogoliubov many-body states, we show that our approach reproduces indeed the results of full particle-number projection. We then estimate the charge and mass number dispersion of several scission configurations in Pu with and without pairing correlations included. We show that odd-even effects in the charge probability naturally occur within our approach, which could explain the well-known odd-even staggering of charge distributions. Our method is applicable either in static calculations of scission configurations such as, e.g., in the macroscopic-microscopic approach or energy density functional theory, but also in explicitly time-dependent density functional theory simulations of fission.

    nucl-thPRC(2019)·34 citations
  2. 02

    Structures in the energy distribution of the scission neutrons: finite neutron-number effect

    N.Carjan🇷🇴 · M.Rizea🇷🇴

    The scission neutron kinetic energy spectrum is calculated for in the frame of the dynamical scission model. The bi-dimensional time dependent Schrödinger equation with time dependent potential is used to propagate each neutron wave function during the scission process which is supposed to last sec. At the end, we separate the unbound parts and continue to propagate them as long as possible (in this case sec) in the frozen fragments approximation. At several time intervals, the Fourier transforms of these wave packets are calculated in order to obtain the corresponding momentum distributions which lead to the kinetic energy distributions. The evolution of these distributions in time provides an interesting insight into the separation of each neutron from the fissioning system and asymptotically gives the kinetic energy spectrum of that particular neutron. We group the results in substates with given projection of the angular momentum on the fission axis to study its influence on the spectrum. Finally, the sum over all values is compared with a typical evaporation spectrum as well as with recent precise measurements in the reaction . Structures are present both in the scission-neutron spectrum and in the data.

    nucl-thPRC(2019)·13 citations
  3. 03

    Acoplanarity of Lepton Pair to Probe the Electromagnetic Property of Quark Matter

    Spencer Klein🇺🇸 · A.H. Mueller🇺🇸 · Bo-Wen Xiao🇨🇳 · Feng Yuan🇺🇸

    We investigate the -broadening effects in dilepton production through photon-photon scattering in heavy ion collisions. The QED multiple interaction effects with the medium is found to be consistent with a recent observation of low transverse momentum lepton pair from ATLAS collaboration at the LHC. We further comment on the magnetic effects and point out a number of ways to disentangle these two mechanisms. In particular, the rapidity dependence of the -broadening effects provide a unique probe to the magnetic effects.

    hep-phhep-exnucl-exnucl-thPRL(2019)·77 citations
  4. 04

    Magneto-Transport in a Chiral Fluid from Kinetic Theory

    Navid Abbasi🇮🇷 · Farid Taghinavaz🇮🇷 · Omid Tavakol🇮🇷

    We argue that in order to study the magneto-transport in a relativistic Weyl fluid, it is needed to take into account the associated quantum corrections, namely the side-jump effect, at least to second order. To this end, we impose Lorentz invariance to a system of free Weyl fermions in the presence of the magnetic field and find the second order correction to the energy dispersion. By developing a scheme to compute the integrals in the phase space, we show that the mentioned correction has non-trivial effects on the thermodynamics of the system. Specifically, we predict the form of the negative magnetoresistance in the system from the enthalpy density in equilibrium. Then in analogy with Weyl semimetal, in the framework of the chiral kinetic theory and under the relaxation time approximation, we explicitly compute the magneto-conductivities, at low temperature limit (). We show that the conductivities obey the set of Ward identities which follow from the generating functional including the Chern-Simons part.

    hep-thcond-mat.str-elnucl-thJHEP(2019)·13 citations
  5. 05

    photoproduction and nucleon resonances

    Jung-Min Suh🇰🇷 · Sang-Ho Kim🇰🇷 · Hyun-Chul Kim🇰🇷

    We present results of a recent work on the reaction mechanism of photoproduction off the neutron in the range of GeV and discuss the role of various nucleon resonances listed in the Particle Data Group (PDG). We make use of an effective Lagrangian approach combining with a Regge method. The total and helicity-dependent cross sections are computed and the numerical results are in good agreement with the A2 experimental data.

    hep-phhep-exnucl-exnucl-thSpringer Proc.Phys.(2020)·0 citations
  6. 06

    Hagedorn bag-like model with a crossover transition meets lattice QCD

    Volodymyr Vovchenko🇩🇪 · Mark I. Gorenstein🇺🇦 · Carsten Greiner🇩🇪 · Horst Stoecker🇩🇪

    Thermodynamic functions, the (higher-order) fluctuations and correlations of conserved charges at , and the Fourier coefficients of net-baryon density at imaginary , are considered in the framework of a Hagedorn bag-like model with a crossover transition. The qualitative behavior of these observables is found to be compatible with lattice QCD results. Fair quantitative description of the lattice data is obtained when quasiparticle-type quarks and gluons with non-zero masses are introduced into the bag spectrum. The equation of state of the model exhibits a smooth and wide crossover transition.

    hep-phhep-latnucl-thPRC(2019)·17 citations

Affiliations

first authorsco-authorsvia INSPIRE