PaperPanorama

Nuclear Theory·nucl-th

Monday·May 15, 2017

7 papers4 primary·3 cross-listed

  1. 01

    Variational calculation of the ground state of closed-shell nuclei up to

    D. Lonardoni · A. Lovato · Steven C. Pieper · R. B. Wiringa

    Variational calculations of ground-state properties of He, O, and Ca are carried out employing realistic phenomenological two- and three-nucleon potentials. The trial wave function includes two- and three-body correlations acting on a product of single-particle determinants. Expectation values are evaluated with a cluster expansion for the spin-isospin dependent correlations considering up to five-body cluster terms. The optimal wave function is obtained by minimizing the energy expectation value over a set of up to 20 parameters by means of a nonlinear optimization library. We present results for the binding energy, charge radius, one- and two-body densities, single-nucleon momentum distribution, charge form factor, and Coulomb sum rule. We find that the employed three-nucleon interaction becomes repulsive for . In O the inclusion of such a force provides a better description of the properties of the nucleus. In Ca instead, the repulsive behavior of the three-body interaction fails to reproduce experimental data for the charge radius and the charge form factor. We find that the high-momentum region of the momentum distributions, determined by the short-range terms of nuclear correlations, exhibit a universal behavior independent of the particular nucleus. The comparison of the Coulomb sum rules for He, O, and Ca reported in this work will help elucidate in-medium modifications of the nucleon form factors.

    nucl-thnucl-exPRC(2017)·86 citations
  2. 02

    Conserved charge fluctuations using the -measure in heavy-ion collisions

    D. K. Mishra🇮🇳 · P. K. Netrakanti🇮🇳 · P. Garg🇺🇸

    We study the net-charge fluctuations, -measure variable, in high energy heavy-ion collisions in heavy-ion jet interaction generator (HIJING), ultrarelativistic quantum molecular dynamics (UrQMD) and hadron resonance gas (HRG) models for various center-of-mass energies (\sqsn). The effect of kinematic acceptance and resonance decay, in the pseudorapidity acceptance interval () and lower transverse momentum () threshold, on fluctuation measures are discussed. A strong dependence of with the in HIJING and UrQMD models is observed as opposed to results obtained from the HRG model. The dissipation of fluctuation signal is estimated by fitting the -measure as a function of the . An extrapolated function for higher values at lower \sqsn is different from the results obtained from models. Particle species dependence of and the effect of the selection threshold are discussed in HIJING and HRG models. The comparison of , at midrapidity, of net-charge fluctuations at various \sqsn obtained from the models with the data from the ALICE experiment is discussed. The results from the present work as a function of and \sqsn will provide a baseline for comparison to experimental measurements.

    nucl-thhep-phnucl-exPRC(2017)·6 citations
  3. 03

    Exact Solutions to the Fermion Propagator Schwinger-Dyson Equation in Minkowski space with on-shell Renormalization for Quenched QED

    Shaoyang Jia🇺🇸 · M.R. Pennington🇺🇸

    With the introduction of a spectral representation, the Schwinger-Dyson equation (SDE) for the fermion propagator is formulated in Minkowski space in QED. After imposing the on-shell renormalization conditions, analytic solutions for the fermion propagator spectral functions are obtained in four dimensions with a renormalizable version of the Gauge Technique anzatz for the fermion-photon vertex in the quenched approximation in the Landau gauge. Despite the limitations of this model, having an explicit solution provides a guiding example of the fermion propagator with the correct analytic structure. The Padé approximation for the spectral functions is also investigated.

    nucl-thhep-phhep-thPRD(2017)·23 citations
  4. 04

    Strong Diffusion Effect of Charm Quarks on Production in Pb-Pb collisions at the LHC

    Jiaxing Zhao🇨🇳 · Baoyi Chen

    We study the production based on coalescence model at = 2.76 and 5.02 TeV Pb-Pb collisions. With the colliding energy increasing from 2.76 TeV to 5.02 TeV, the number of charm pairs is enhanced by more than 50%. However, the ratio of inclusive nuclear modification factors is only about 1.1 1.2. We find that the regeneration of is proportional to the densities of charm and anti-charm quarks, instead of their total numbers. The charm quark density is diluted by the strong expansion of quark gluon plasma, which suppresses the combination probability of heavy quarks and regeneration. This effect is more important in higher colliding energies where QGP expansion is strong. We also propose the ratio as a measurement of and coalescence probability, which is only affected by the heavy quark diffusions in QGP, and does not depend on the inputs such as cold nuclear matter effects and cross sections of charm quark production. Further more, we give the predictions at the energy of Future Circular Collider ( = 39 TeV).

    nucl-thPLB(2018)·39 citations
  5. 05

    Dispersion relations for

    Tobias Isken🇩🇪 · Bastian Kubis🇩🇪 · Sebastian P. Schneider🇩🇪 · Peter Stoffer🇩🇪

    We present a dispersive analysis of the decay amplitude for that is based on the fundamental principles of analyticity and unitarity. In this framework, final-state interactions are fully taken into account. Our dispersive representation relies only on input for the and scattering phase shifts. Isospin symmetry allows us to describe both the charged and neutral decay channel in terms of the same function. The dispersion relation contains subtraction constants that cannot be fixed by unitarity. We determine these parameters by a fit to Dalitz-plot data from the VES and BES-III experiments. We study the prediction of a low-energy theorem and compare the dispersive fit to variants of chiral perturbation theory.

    hep-phhep-exnucl-exnucl-thEPJC(2017)·63 citations
  6. 06

    Rapidity Distributions of Hadrons in Proton-Nucleus Collisions

    H.J. Pirner🇩🇪 · B. Kopeliovich🇩🇪

    We study proton-lead collisions with a new model for the Fock states of the incoming proton. The number of collisions which the proton experiences selects the appropriate Fock state of the proton which generates a multiple of pp-like rapidity distributions. We take as input the pp maximum entropy distributions shifting the respective cm-rapidities and reducing the available energies. A comparison with existing data at 5 TeV is made and results for 8 TeV are presented. We also explore the high multiplicity data in this model.

    hep-phnucl-thPRC(2018)·0 citations
  7. 07

    White Paper on Nuclear Data Needs and Capabilities for Basic Science

    F.G. Kondev🇺🇸 · M. Thoennessen🇺🇸 · J. Batchelder🇺🇸 · T. Kawano🇺🇸 · J. Kelley🇺🇸 · E. McCutchan🇺🇸 · M. Smith🇺🇸 · A. Sonzogni🇺🇸 · I. Thompson🇺🇸

    The Workshop on Nuclear Data Needs and Capabilities for Basic Science was held at the University of Notre Dame on 10-11 August 2016. The purpose of this targeted workshop was to assemble and prioritize the needs of the nuclear physics research community for data sets, services and capabilities in areas including nuclear structure, nuclear reactions, nuclear astrophysics, fundamental interactions, neutrino physics and nuclear theory. An overview of nuclear data needs and capabilities identified at this meeting are summarized in the present document.

    nucl-exnucl-th1 citation

Affiliations

first authorsco-authorsvia INSPIRE