PaperPanorama

Nuclear Theory·nucl-th

Monday·February 4, 2019

9 papers4 primary·5 cross-listed

  1. 05

    Lévy imaging of elastic hadron-hadron scattering: Odderon and inner structure of the proton

    T. Csörgő🇭🇺 · R. Pasechnik🇸🇪 · A. Ster🇭🇺

    A novel model-independent Lévy imaging method is employed for reconstruction of the elastic and scattering amplitudes at low and high energies. The four-momentum transfer dependent elastic slope , the nuclear phase as well as the excitation function of the shadow profile have been extracted from data at ISR, Tevatron and LHC energies. We found qualitative differences in properties of and between and for collisions, that indicate an Odderon effect. A proton substructure has also been identified and found to have two different sizes, comparable to that of a dressed quark at the ISR and of a dressed diquark at the LHC energies, respectively.

    hep-phhep-exnucl-thphysics.data-anActa Phys.Polon.Supp.(2019)·14 citations
  2. 06

    Quark-Hadron Crossover with Vortices

    Chandrasekhar Chatterjee🇯🇵 · Muneto Nitta.🇯🇵 · Shigehiro Yasui🇯🇵

    The quark-hadron crossover conjecture was proposed as a continuity between hadronic matter and quark matter with no phase transition. It is based on matching of symmetry and excitations in both the phases. It connects hyperon matter and color-flavor locked (CFL) phase of color superconductivity in the limit of light strange quark mass. We study generalization of this conjecture in the presence of topological vortices. We propose a picture where hadronic superfluid vortices in hyperon matter could be connected to non-Abelian vortices (color magnetic flux tubes) in the CFL phase during this crossover. We propose that three hadronic superfluid vortices must join together to three non-Abelian vortices with different color fluxes with the total color magnetic fluxes canceled out, where the junction is called a colorful boojum.

    hep-phastro-ph.HEnucl-thJPS Conf.Proc.(2019)·13 citations
  3. 07

    Nucleon and isobar in a strong magnetic field

    Ulugbek Yakhshiev🇰🇷 · Hyun-Chul Kim🇰🇷 · Makoto Oka🇯🇵

    We investigate the static properties of the nucleon in the presence of strong magnetic fields and discuss the consequent changes of the nucleon structure, based on the Skyrme model. The results show that at large values of the magnetic field ( to ), which is supposed to appear in heavy-ion collision experiments at RHIC energies, the soliton starts to deviate from the spherically symmetric form and its size starts to change. At extremely large values of the magnetic field ( G), which may be found at the LHC experiments, the soliton becomes more compact than in free space. The results also show that in the presence of the external magnetic field, the mass of the nucleon tends to increase in general and the mass degeneracy of the isobars from isospin symmetry will be lifted. We also discuss the changes in the mass difference between the and the nucleon, , due to the influence of the external magnetic field. We find that increases as the strength of the magnetic field grows.

    hep-phhep-exnucl-exnucl-thPRD(2019)·14 citations
  4. 08

    Exclusive dilepton production in ultraperipheral collisions at the LHC

    C. Azevedo🇧🇷 · V.P. Goncalves🇧🇷 · B.D. Moreira🇧🇷

    In this paper we perform a systematic study of the exclusive dilepton production by interactions in collisions at the LHC Run 2 energies considering different levels of precision for the treatment of the absorptive corrections and for the nuclear form factor. The rapidity and invariant mass distributions are estimated taking into account the experimental cutoffs and a comparison with the recent ALICE and ATLAS data for the and production is presented.

    hep-phhep-exnucl-thEPJC(2019)·51 citations
  5. 09

    -wave scattering lengths for the Be+p system from an -matrix analysis

    S. N. Paneru (1)🇺🇸 · C. R. Brune (1) · R. Giri (1) · R. J. Livesay (2) · U. Greife (2) · J. C. Blackmon (3) · D. W. Bardayan (4) · K. A. Chipps (5) · B. Davids (6 and 7) · D. S. Connolly (6) · K. Y. Chae (8) · A. E. Champagne (9) and 14 other authors

    The astrophysical -factor for the radiative proton capture reaction on Be () at low energies is affected by the -wave scattering lengths. We report the measurement of elastic and inelastic scattering cross sections for the Be+p system in the center-of-mass energy range 0.474 - 2.740 MeV and center-of-mass angular range of 70- 150. A radioactive Be beam produced at Oak Ridge National Laboratory's (ORNL) Holifield Radioactive Ion Beam Facility was accelerated and bombarded a thin polypropylene (CH) target. Scattered ions were detected in the segmented Silicon Detector Array. Using an -matrix analysis of ORNL and Louvain-la-Neuve cross section data, the -wave scattering lengths for channel spins 1 and 2 were determined to be 17.34 and -3.18 fm, respectively. The uncertainty in the -wave scattering lengths reported in this work is smaller by a factor of 5-8 compared to the previous measurement, which may reduce the overall uncertainty in at zero energy. The level structure of B is discussed based upon the results from this work. Evidence for the existence of 0 and 2 levels in B at 1.9 and 2.21 MeV, respectively, is observed.

    nucl-exastro-ph.SRnucl-thPRC(2019)·12 citations

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