2021/12/10 by H. Güven, Kutsal Bozkurt, E. Khan +1 · 1 citation
Physics and Astronomy · Chemistry · #Nuclear physics research studies #Quantum Chromodynamics and Particle Interactions #Advanced NMR Techniques and Applications #Physics #Lambda #Coulomb #Ground state #Particle physics #Binding energy #Baryon #Charmed baryons #Bound state #State (computer science) #Atomic physics #Nuclear physics #Quantum mechanics #Electron
paper · doi:10.1103/physrevc.104.064306
openalex publication_date 2021/12/10 · openalex created_date 2021/12/31 · openalex updated_date 2026/07/22
Closed shell charmed hypernuclei _\mathrm\ensuremathΛc5Li, _\mathrm\ensuremathΛc17F, _\mathrm\ensuremathΛc41Sc, _\mathrm\ensuremathΛc57Cu, _\mathrm\ensuremathΛc133Sb, and _\mathrm\ensuremathΛc209Bi are calculated within the Hartree-Fock approach by using three different force sets derived from microscopic Brueckner-Hartree-Fock calculations of \mathrm\ensuremathΛ hypernuclei. Ground state properties (binding energies, \mathrm\ensuremathΛc separation energies, \mathrm\ensuremathΛc single particle energies, and \mathrm\ensuremathΛc densities) of charmed nuclei are examined. We confirm the results and conclusions of different models from the literature, related to \mathrm\ensuremathΛc hypernuclei. Due to the Coulomb repulsion between protons and the \mathrm\ensuremathΛc baryon, charmed hypernuclei are most bound for 16\ensuremath≤A\ensuremath≤41, where _\mathrm\ensuremathΛc17F can be considered as an excellent candidate to determine charmed hypernuclei properties. The competition between the attractive nucleon-\mathrm\ensuremathΛc interaction and the Coulomb repulsion is discussed, and we compare \mathrm\ensuremathΛ and \mathrm\ensuremathΛc hypernuclei properties.