\begin{document}$^{120}$\end{document}Sn. By comparing with the relativistic mean field (RMF) model, it is found that the inclusion of exchange terms in the RHF model changes the in-medium balance of nuclear interactions and the equilibrium of nuclear dynamics, which in turn affects the description of the single-particle effective potential. For several neutron resonance states in \begin{document}$^{120}$\end{document}Sn with finite resonant width, RHF model predicts lower resonant energy and smaller widths than RMF. For the single-particle states around the continuum threshold, the featured signals of resonance can depend sensitively on the effective interactions. In addition, for the spin-partner states \begin{document}$\nu {\mathrm{i}}_{13/2}$\end{document} and \begin{document}$\nu {\mathrm{i}}_{11/2}$\end{document} in resonance states, the effect of Fock terms on their spin-orbit splitting is analyzed. In comparison with the bound states, the wave functions of resonant spin-partner states can differ remarkably from each other, changing the effective potential and single-particle energies correspondingly. Thus, additional components in the single-particle effective potential may also contribute to the spin-orbit splitting of resonance states, aside from the spin-orbit interaction. In order to elucidate the mechanism of Fock term in single-particle resonance physics, in the subsequent study more numerical techniques that have been recently developed will be incorporated into the RHF methodology."> - 必威体育下载

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Yang Wei, Ding Shi-Yuan, Sun Bao-Yuan
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  • Abstract views:1321
  • PDF Downloads:56
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  • Received Date:10 October 2023
  • Accepted Date:18 December 2023
  • Available Online:03 January 2024
  • Published Online:20 March 2024

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