PaperPanorama

Nuclear Theory·nucl-th

Wednesday·September 4, 2024

15 papers3 primary·12 cross-listed

  1. 01

    Electromagnetic Single-nucleon Response involving Polarized Targets

    T. W. Donnelly🇺🇸 · Sabine Jeschonnek🇺🇸

    This work is an extension of our past study focused on a covariant representation of the electromagnetic (EM) current of spin-1/2 Dirac particles, specifically, nucleons. In the past study the EM responses that occur in unpolarized electron scattering from unpolarized nucleons were derived; however, scattering of polarized electrons from polarized nucleons was beyond the scope of that earlier work. Here such extensions are studied in detail. While in other work the EM response has already been developed for the double-polarization scattering problem, that effort was focused on high-energy collider physics. In the present study the formalism is recast into a set of EM response functions that have transparent dependencies on the relevant kinematic variables, especially on how these behave with respect to the momentum p of the (moving) struck, polarized nucleon. The motivation for such a reformulation of the problem is the desire to see a clear path to expansions in of the EM response for use in devising ``prescriptions for nuclear physics''. Results are provided where comparisons of the full (unexpanded) responses with various approximations that are frequently employed in studies of EM nuclear physics are made, demonstrating that under some circumstances such approximations are reasonable, whereas in other circumstances the expanded results are likely to be invalid. In addition, the EM current operators and approximations to them are discussed in detail.

    nucl-thPRC(2024)·1 citation
  2. 02

    Competing shape evolution, crossing configurations and single particle levels in nuclei

    Noam Gavrielov🇮🇱

    The evolution of shape in the even-even zirconium (Zr) isotopes has been the subject of study for many years. However, the odd-mass isotopes have not been investigated as extensively due to limited experimental accessibility and computational challenges. This work, employing the interacting boson-fermion model with configuration mixing, examines the effect of rapid shape evolution and normal-intruder configuration crossing -- both identified as quantum phase transitions -- alongside evolution in single particle energies, on the positive-parity spectrum of odd-mass Zr isotopes. Calculated energy levels, magnetic moments, values, and quadrupole moments are compared to experimental data, showing good agreement. The special case of Zr, which lies near the critical point of both quantum phase transitions, is also addressed, offering a new interpretation to the isomeric state and the occurrence of the type II shell evolution, in light of recent debates.

    nucl-thPRResearch(2025)·4 citations
  3. 03

    KDAR neutrino scattering for C target via charged current and muon angular distribution

    Chaeyun Lee🇰🇷 · Kyungsik Kim🇰🇷 · Myung-Ki Cheoun🇰🇷 · Eunja Ha🇰🇷 · Tatsushi Shima🇯🇵 · Toshitaka Kajino🇨🇳

    We calculate muon-neutrino () scattering off C via charged current (CC) by exploiting the 236 MeV from the kaon-decay-at-rest (KDAR). In this energy region, since both inelastic scattering below the quasielastic (QE) region and the QE scattering contribute simultaneously, we combine the inelastic scattering obtained by the QRPA and the QE scattering obtained by distorted wave born approximation (DWBA) based on the relativistic mean field (RMF) theory. We compare the results to the data from MiniBooNE. Further, since the KDR CC scattering may have angle dependence of outgoing muon, we investigate the differential angular dependent cross section in the -C scattering and compare to the results by -C scattering. These results could be useful for the calibration of the forthcoming KDAR neutrino cross section experiments.

    nucl-th2 citations

Affiliations

first authorsco-authorsvia INSPIRE