English

Ground State Properties of Charmed Hypernuclei with Mean Field Approach

Nuclear Theory 2021-12-22 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Closed shell charmed hypernuclei Λc5^5_{\Lambda_c}Li, Λc17^{17}_{\Lambda_c}F, Λc41^{41}_{\Lambda_c}Sc, Λc57^{57}_{\Lambda_c}Cu, Λc133^{133}_{\Lambda_c}Sb and Λc209^{209}_{\Lambda_c}Bi are calculated within Hartree-Fock approach by using three different force sets derived from microscopic Brueckner-Hartree-Fock calculations of Λ\Lambda hypernuclei. Ground state properties (binding energies, Λc\Lambda_c separation energies, Λc\Lambda_c single particle energies and Λc\Lambda_c densities) of charmed nuclei are examined. Due to the Coulomb repulsion between protons and the Λc\Lambda_c baryon, charmed hypernuclei are most bound for 1616\leqA41\leq 41, where Λc17^{17}_{\Lambda_c}F can be considered as an excellent candidate to measure charmed hypernuclei. The competition between the attractive nucleon-Λc\Lambda_c interaction and the Coulomb repulsion is discussed, and we compare Λ\Lambda and Λc\Lambda_c hypernuclei properties.

Keywords

Cite

@article{arxiv.2106.04491,
  title  = {Ground State Properties of Charmed Hypernuclei with Mean Field Approach},
  author = {H. Güven and K. Bozkurt and E. Khan and J. Margueron},
  journal= {arXiv preprint arXiv:2106.04491},
  year   = {2021}
}

Comments

9 pages, 6 figures