PaperPanorama

Nuclear Theory·nucl-th

Monday·January 1, 2024

9 papers3 primary·6 cross-listed

  1. 01

    Low-energy structure and decay properties of neutron-rich nuclei in the region of a shape phase transition

    Kosuke Nomura

    The low-energy structure and decay properties of the neutron-rich even-mass nuclei near the neutron number that are experimentally of much interest are investigated within the framework of the nuclear density functional theory and the interacting boson-fermion-fermion model. By using the results of the constrained self-consistent mean-field calculations based on the relativistic energy density functional, the interacting-boson Hamiltonian describing the even-even core nuclei, the boson-fermion, and the fermion-fermion interactions are determined. The Gamow-Teller transition strengths, with the corresponding operator being constructed without introducing further phenomenological adjustment, are computed by using the wave functions of the initial and final nuclei of the decay. The triaxial quadrupole potential energy surfaces computed for the even-even isotones suggest a pronounced softness. The calculated energy spectra for the even-even and odd-odd nuclei in the Rb to Cd isotopic chains exhibit an abrupt change in nuclear structure around , as suggested experimentally. The predicted -decay values underestimate the measured values for the nuclei with low and with , exhibit a rapid increase for , reflecting the nuclear structure evolution, and agree rather well with the measured values for those nuclei with being not far from the proton major shell closure . Sensitivity of the predicted -decay properties to the model assumptions and parameters employed in the nuclear structure calculations is discussed, specifically, by comparing results obtained based on the different choices of the underlying energy density functional.

    nucl-thnucl-exPRC(2024)·8 citations
  2. 02

    Significance of the compound nucleus surface energy coefficients in the synthesis of the superheavy nuclei with

    R. Zargini · S. A. Seyyedi

    This paper investigates the impacts of the different surface energy coefficients on the compound nucleus decay modes during heavy ion fusion reactions, with focus given to the superheavy nuclei (SHN) in the range of . The evaporation-residue (ER) cross sections were calculated for different surface asymmetric constants, and surface energy constants, . In these calculations, the di-nuclear system model and proximity potential, along with considering deformed nuclei, were employed. Comparing the experimental data and this theoretical approach, the best values of and are and , respectively. Furthermore, this new model was used to investigate the probability of synthesis of experimentally unknown heavier systems with and . There exist five promising combinations to synthesize SHN with : a) , b) , c) , d) , and e) . In addition, it is found that the best combinations to synthesize SHN with are , and .

    nucl-thPRC(2023)·6 citations
  3. 03

    Enhancement of deuteron production in jets

    Stanislaw Mrowczynski🇵🇱

    A strong enhancement of deuteron production in jets has been recently observed in proton-proton collisions at LHC. We show that the effect is due to two independent factors: a collimation of jet nucleons and a smallness of nucleon source which is significantly smaller than a deuteron.

    nucl-thhep-phActa Phys.Polon.B(2024)·2 citations

Affiliations

first authorsco-authorsvia INSPIRE