The charge-weak form factor difference shows strong sensitivity to isovector spin-orbit strength in 48Ca and 90Zr but weak sensitivity in 208Pb and 62Ni, driven by nuclear structure rather than direct spin-orbit effects.
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Gaussian-folded finite-range pairing functionals stabilize nuclear DFT calculations in extended model spaces containing continuum states.
citing papers explorer
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Effects of isovector spin-orbit interaction on the charge-weak form factor difference in $^{48}$Ca, $^{208}$Pb, $^{90}$Zr and $^{62}$Ni
The charge-weak form factor difference shows strong sensitivity to isovector spin-orbit strength in 48Ca and 90Zr but weak sensitivity in 208Pb and 62Ni, driven by nuclear structure rather than direct spin-orbit effects.
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Finite-range pairing in nuclear density functional theory
Gaussian-folded finite-range pairing functionals stabilize nuclear DFT calculations in extended model spaces containing continuum states.