PaperPanorama

Nuclear Theory·nucl-th

Monday·April 8, 2019

5 papers4 primary·1 cross-listed

  1. 01

    Radioactive beams and inverse kinematics: probing the quantal texture of the nuclear vacuum

    F. Barranco🇪🇸 · G. Potel🇺🇸 · E. Vigezzi🇮🇹 · R. A. Broglia🇩🇰

    The properties of the quantum electrodynamic (QED) vacuum in general, and of the nuclear vacuum (ground) state in particular are determined by virtual processes implying the excitation of a photon and of an electron--positron pair in the first case and of, for example, the excitation of a collective quadrupole surface vibration and a particle--hole pair in the nuclear case. Signals of these processes can be detected in the laboratory in terms of what can be considered a nuclear analogue of Hawking radiation. An analogy which extends to other physical processes involving QED vacuum fluctuations like the Lamb shift, pair creation by rays, van der Waals forces and the Casimir effect, to the extent that one concentrates on the eventual outcome resulting by forcing a virtual process to become real, and not on the role of the black hole role in defining the event horizon. In the nuclear case, the role of this event is taken over at a microscopic, fully quantum mechanical level, by nuclear probes (reactions) acting on a virtual particle of the zero point fluctuation (ZPF) of the nuclear vacuum in a similar irreversible, no--return, fashion as the event horizon does, letting the other particle, entangled with the first one, escape to infinity, and eventually be detected. With this proviso in mind one can posit that the reactions H(Be,Be;3.37 ))H and H(Li,Li(; 2.69 ))H together with the associated decay processes indicate a possible nuclear analogy of Hawking radiation.

    nucl-thEPJA(2019)·3 citations
  2. 02

    Comparison of heavy-ion transport simulations: Collision integral with pions and resonances in a box

    Akira Ono🇯🇵 · Jun Xu🇨🇳 · Maria Colonna🇮🇹 · Pawel Danielewicz🇺🇸 · Che Ming Ko🇺🇸 · Manyee Betty Tsang🇺🇸 · Yong-Jia Wang🇨🇳 · Hermann Wolter🇩🇪 · Ying-Xun Zhang🇨🇳 · Lie-Wen Chen🇨🇳 · Dan Cozma🇷🇴 · Hannah Elfner🇩🇪 and 12 other authors

    We compare ten transport codes for a system confined in a box, aiming at improved handling of the production of resonances and pions, which is indispensable for constraining high-density symmetry energy from observables such as the yield ratio in heavy-ion collisions. The system in a box is initialized with nucleons at saturation density and at 60 MeV temperature. The reactions and are implemented, but the Pauli blocking and the mean-field potential are deactivated in the present comparison. Results are compared to those from the two reference cases of a chemically equilibrated ideal gas mixture and of the rate equation. In the results of the numbers of and , deviations from the reference values are observed in many codes, and they depend significantly on the size of the time step. These deviations are tied to different ways in ordering the sequence of collisions and decays, that take place in the same time step. Better agreements are seen in the reaction rates and the number ratios among the isospin species of and . These are, however, affected by the correlations, which are absent in the Boltzmann equation, but are induced by the way particle scatterings are treated in transport calculations. The uncertainty in the transport-code predictions of the ratio for the system initialized at n/p = 1.5, after letting the existing resonances decay, is found to be within a few percent, which is sufficiently small so that it does not strongly impact constraining the high-density symmetry energy from heavy-ion collisions. Most of the sources of uncertainties have been understood, and individual codes may be further improved. This investigation will be extended in the future to heavy-ion collisions to ensure the problems identified here remain under control.

    nucl-thnucl-exPRC(2019)·111 citations
  3. 03

    Density-constraint Time-dependent Hartree-Fock-Bogoliubov method

    G. Scamps · Y. Hashimoto

    Background: The Density-constraint Time-dependent Hartree-Fock method is currently the tool of choice to predict fusion cross-sections. However, it does not include pairing correlations, which have been found recently to play an important role. Purpose: To describe the fusion cross-section with a method that includes the superfluidity and to understand the impact of pairing on both the fusion barrier and cross-section. Method: The density-constraint method is tested first on the following reactions without pairing, O+O and Ca+Ca. A new method is developed, the Density-constraint Time-dependent Hartree-Fock-Bogoliubov method. Using the Gogny-TDHFB code, it is applied to the reactions O+O and Ca+Ca. Results: The Gogny approach for systems without pairing reproduces the experimental data well. The DC-TDHFB method is coherent with the TDHFB fusion threshold. The effect of the phase-lock mechanism is shown for those reactions. Conclusions: The DC-TDHFB method is a useful new tool to determine the fusion potential between superfluid systems and to deduce their fusion cross-sections.

    nucl-thnucl-exPRC(2019)·16 citations
  4. 04

    Isospin effect in peripheral heavy-ion collisions at Fermi energies

    Ya-Fei Guo · Peng-Hui Chen · Fei Niu · Zhao-Qing Feng

    Within the framework of the Lanzhou quantum molecular dynamics (LQMD) transport model, the isospin effect in peripheral heavy-ion collisions has been investigated thoroughly. A coalescence approach is used for recognizing the primary fragments formed in nucleus-nucleus collisions. The secondary decay process of the fragments is described by the statistical code, GEMINI. Production mechanism and isospin effect of the projectile-like and target-like fragments are analyzed with the combined approach. It is found that the isospin migration from the high-isospin density to the low-density matter takes place in the neutron-rich nuclear reactions, i.e., Ca+Pb, Kr+Ca/Pb/Sn, Xe+Pb, Sn+Sn and Xe+Xe. A hard symmetry energy is available for creating the neutron-rich fragments, in particular in the medium-mass region. The isospin effect of the neutron to proton (n/p) ratio of the complex fragments is reduced once including the secondary decay process. However, a soft symmetry energy enhances the n/p ratio of the light particles, in particular at the kinetic energies above 15 MeV/nucleon.

    nucl-thCPC(2018)·4 citations
  5. 05

    NJL-type models in the presence of intense magnetic fields: the role of the regularization prescription

    Sidney S. Avancini🇧🇷 · Ricardo L. S. Farias🇧🇷 · Norberto N. Scoccola🇦🇷 · William R. Tavares🇧🇷

    We study the regularization dependence of the Nambu-Jona--Lasinio model (NJL) predictions for some properties of magnetized quark matter at zero temperature (and baryonic density) in the mean field approximation. The model parameter dependence for each regularization procedure is also analyzed in detail. We calculate the average and difference of the quark condensates using different regularization methods and compare with recent lattice results. In this context, the reliability of the different regularization procedures is discussed.

    hep-phhep-lathep-thnucl-thPRD(2019)·66 citations

Affiliations

first authorsco-authorsvia INSPIRE