arXiv · 1901.05453
A Study of Charge Radii and Neutron Skin Thickness near Nuclear Drip Lines
Abstract
We studied the charge radius, rms radius and neutron skin thickness $Δr_{np}$ in even-even isotopes of Si, S, Ar and Ca and isotones of N =20, 28, 50 and 82. The $Δr_{np}$ in doubly-magic $^{48}$Ca, $^{68}$Ni, $^{120,132}$Sn and $^{208}$Pb nuclei has also been calculated. Theoretical calculations are done with the Hartree-Fock-Bogoliubov theory with the effective Skyrme interactions. Calculated theoretical estimates are in good agreement with the recently available experimental data. The charge radii for Si, S, Ar and Ca isotopes is observed to be minimum at neutron number N =14. The theoretically computed results with UNEDF0 model parameterization of functional are reasonably reproducing the experimental data for $Δr_{np}$ in $^{48}$Ca, $^{68}$Ni and $^{120,132}$Sn. The energy density functional of UNEDF1 model provides much improved result of $Δr_{np}$ for $^{208}$Pb.
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Virender Thakur, Shashi K Dhiman. 2019-01-23. A Study of Charge Radii and Neutron Skin Thickness near Nuclear Drip Lines. https://doi.org/10.1016/j.nuclphysa.2019.121623
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