PaperPanorama

Nuclear Theory·nucl-th

Wednesday·July 3, 2019

11 papers3 primary·8 cross-listed

  1. 01

    Electroweak pion-production on nuclei within the extended factorization scheme

    Noemi Rocco🇺🇸 · Satoshi X. Nakamura🇨🇳 · T.-S. H. Lee🇺🇸 · Alessandro Lovato🇺🇸

    We have applied the extended factorization scheme to investigate the electroweak pion production on nuclei. The ANL-Osaka model, which was obtained by analyzing the data of , , and reactions up to invariant mass 2 GeV, is used to generate the matrix elements of current operators relevant to pion-production off the nucleon. Medium effects on the (1232) component of meson-exchange current are included by using a -nucleus potential determined from the previous -hole model studies of pion-nucleus reactions. Nuclear correlations in the initial target state and in the spectator system(s) are modeled using realistic hole spectral functions. As a first step, we show that the data of C up to the (1232) region can be described reasonably well. The interplay between the pion production and two-body meson-exchange mechanisms is shown to be essential in improving the agreement with the data in the ``dip'' region, between the quasielastic and the (1232) peaks. Predictions for C have also been made. They can be used to estimate pion-emission rates in neutrino-nucleus cross section, which constitutes an important systematic uncertainty to the reconstructed neutrino energy. With further improvements of the Metropolis Monte-Carlo techniques to account for final states comprised of more than two particles, our approach can be employed up to 2 GeV, where two-pion production and higher mass nucleon resonances must be included for analyzing the data from accelerator-based neutrino-oscillation experiments.

    nucl-thhep-phPRC(2019)·35 citations
  2. 02

    Lepton scattering from Ar and Ti in the quasielastic peak region

    C. Barbieri🇬🇧 · N. Rocco🇺🇸 · V. Somà🇫🇷

    Neutron and proton spectral functions of Ar, Ca, and Ti isotopes are computed using the ab initio self-consistent Green's function approach. The resulting radii and charge distributions are in good agreement with available experimental data. The spectral functions of Ar and Ti are then utilized to calculate inclusive (,') cross sections within a factorization scheme and are found to correctly reproduce the recent Jefferson Lab measurements. Based on these successful agreements, the weak charged and neutral current double-differential cross sections for neutrino-Ar scattering are predicted in the quasielastic region. Results obtained by replacing the (experimentally inaccessible) neutron spectral distribution of Ar with the (experimentally accessible) proton distribution of Ti are compared and the accuracy of this approximation is assessed.

    nucl-thhep-exPRC(2019)·43 citations
  3. 03

    Pion and kaon parton distribution functions from basis light front quantization and QCD evolution

    Jiangshan Lan🇨🇳 · Chandan Mondal🇨🇳 · Shaoyang Jia🇺🇸 · Xingbo Zhao🇨🇳 · James P. Vary🇺🇸

    We investigate the parton distribution functions (PDFs) of the pion and the kaon by combining quantum chromodynamics (QCD) evolution with the basis light front quantization. The initial PDFs result from the light front wave functions obtained by diagonalizing the effective Hamiltonian consisting of the holographic QCD confinement potential, a complementary longitudinal confinement potential, and the color-singlet Nambu--Jona-Lasinio interactions. The valence-quark PDF of the pion, after QCD evolution, is consistent with the result from the E-0615 experiment at Fermilab. Meanwhile, the pion structure function calculated from the PDFs agrees with the ZEUS and the H1 experiments at DESY-HERA for large . Additionally, the ratio of the up quark PDF of the kaon to that of the pion is in agreement with the NA-003 experiment at CERN. We also present the cross section for the pion-nucleus induced Drell-Yan process with the obtained pion PDFs supplemented by the PDFs of the target nuclei.

    nucl-thhep-phPRD(2020)·119 citations

Affiliations

first authorsco-authorsvia INSPIRE