PaperPanorama

Nuclear Theory·nucl-th

Wednesday·January 31, 2024

11 papers6 primary·5 cross-listed

  1. 07

    Isovector Axial Charge and Form Factors of Nucleons from Lattice QCD

    Rajan Gupta🇺🇸

    I present an overview of the calculations of the isovector axial vector form factor of the nucleon, , using lattice QCD. Based on a comparison of results from various collaborations, a case is made that lattice results are now consistent within 10\%. A similar level of uncertainty is found also in the axial charge , the mean squared axial charge radius, , the induced pseudoscalar charge , and the pion-nucleon coupling . These lattice results for are already compatible with those obtained from the recent MINERA experiment but lie 2-3 higher than the phenomenological extraction from the old -deuterium bubble chamber scattering data for ~GeV. Fits to our data show that the dipole ansatz does not have enough parameters to parameterize the form factor over the range ~GeV, whereas even a truncation of the -expansion or a low order Padé are sufficient. Looking ahead, lattice QCD calculations will provide increasingly precise results over the range ~GeV, and MINERA-like experiments will extend the range to ~GeV or higher. To increase precision of lattice data to the percent level, new developments are needed to address two related issues: the exponentially falling signal-to-noise ratio in all nucleon correlation functions and removing excited state contributions. Nevertheless, even with the current methodology, significant reduction in errors is expected over the next few years with higher statistics data on more ensembles closer to the physical point.

    hep-lathep-phnucl-thUniverse(2024)·13 citations
  2. 08

    Mass, spectroscopy and two-neutron decay of Be

    B. Monteagudo🇫🇷 · F.M. Marqués🇫🇷 · J. Gibelin🇫🇷 · N.A. Orr🇫🇷 · A. Corsi🇫🇷 · Y. Kubota🇯🇵 · J. Casal🇮🇹 · J. Gómez-Camacho🇪🇸 · G. Authelet🇫🇷 · H. Baba🇯🇵 · C. Caesar🇩🇪 · D. Calvet🇫🇷 and 56 other authors

    The structure and decay of the most neutron-rich beryllium isotope, Be, has been investigated following proton knockout from a high-energy B beam. Two relatively narrow resonances were observed for the first time, with energies of and MeV above the two-neutron decay threshold and widths of and MeV respectively. These were assigned to be the ground () and first excited () state, with MeV. The mass excess of Be was thus deduced to be MeV, some MeV more bound than the only previous measurement. Both states were observed to decay by direct two-neutron emission. Calculations incorporating the evolution of the wavefunction during the decay as a genuine three-body process reproduced the principal characteristics of the neutron-neutron energy spectra for both levels, indicating that the ground state exhibits a strong spatially compact dineutron component, while the 2 level presents a far more diffuse neutron-neutron distribution.

    nucl-exnucl-thPRL(2024)·20 citations
  3. 09

    Coherent -nucleus scattering and coherent nuclear states

    Alfred H. Mueller🇺🇸

    In the context of a McLerran-Venugopalan (MV) model for a large nucleus, coherent scattering of a virtual photon on that nucleus is evaluated in the gauge, the gauge appropriate for the target nucleus. The evaluation of the scattering in gauge is very intricate compared to the usual gauge evaluation natural for the scattering process, but has the advantage of directly giving the scattering in terms of a partonic description of the nucleus. In the limit where a tagged forward jet puts the dipole-nucleus scattering in the saturation regime the coherent reactions are equal to the inelastic reactions. In terms of the nuclear wave function the coherent reactions come from color singlet and zero total transverse momentum quark-antiquark pairs in the wave function and in the saturation regime the nuclear wave function is a coherent state for these pairs. In the saturation region half of all quarks (or antiquarks) come from zero momentum and color charge pairs.

    hep-phnucl-thJHEP(2024)·3 citations
  4. 10

    Heavy flavour hadron production in relativistic heavy ion collisions at RHIC and LHC in EPOS4HQ

    Jiaxing Zhao🇫🇷 · Joerg Aichelin🇫🇷 · Pol Bernard Gossiaux🇫🇷 · Vitalii Ozvenchuk🇵🇱 · Klaus Werner🇫🇷

    Employing the recently developed EPOS4HQ event generator, we study the production of different heavy-flavor mesons in relativistic heavy-ion collisions at RHIC and LHC energies. The transverse momentum spectra, yield ratio, nuclear modification factor, and elliptic flow can be well described in the EPOS4HQ framework. We furthermore analyze the processes which modify these observables as compared to collisions and are at the origin of the experimentally determined nuclear modification factor .

    hep-phnucl-thPRC(2024)·32 citations
  5. 11

    Diffractive deep inelastic scattering at NLO in the dipole picture

    Guillaume Beuf🇵🇱 · Tuomas Lappi🇫🇮 · Heikki Mäntysaari🇫🇮 · Risto Paatelainen🇫🇮 · Jani Penttala🇺🇸

    We compute the transverse and longitudinal diffractive structure functions to full next-to-leading order accuracy in the dipole picture of deep inelastic scattering. Our calculation uses the standard light-cone perturbation theory method for the partonic content of the virtual photon, together with the Color Glass Condensate description of the target color field. Our result includes as a subset the contribution calculated earlier. We show that there is a rapidity divergence that can be factorized into the BK/JIMWLK evolution of the target Wilson lines, and that all other divergences cancel.

    hep-phnucl-thJHEP(2024)·28 citations

Affiliations

first authorsco-authorsvia INSPIRE