Systematic nuclear-structure dependence of analyzing powers for (p→,t) reactions on mediummass vibrational nuclei
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Abstract
A neutron-number ($N$) dependence of analyzing powers $A(\ensuremath{\theta})$ has been observed in ($\stackrel{\ensuremath{\rightarrow}}{p}$,$t$) reaction leading to the quadrupole vibrational states (${2}_{1}^{+}$) in $^{98}\mathrm{Ru}$, $^{102,108}\mathrm{Pd}$, $^{114}\mathrm{Cd}$, $^{116}\mathrm{Sn}$, and $^{120,126}\mathrm{Te}$. Although analyzing powers for the ground-state transitions $A(\ensuremath{\theta},{0}_{g}^{+})$ are very similar to each other, $A(\ensuremath{\theta},{2}_{1}^{+})$ for the nuclei belonging to the beginning of the $N=50\ensuremath{-}82$ shell are markedly different, having almost opposite signs, from those for nuclei belonging to the latter half of the shell.NUCLEAR REACTIONS $^{100}\mathrm{Ru}$, $^{104,110}\mathrm{Pd}$, $^{116}\mathrm{Cd}$, $^{118}\mathrm{Sn}$, $^{122,128}\mathrm{Te}$($\stackrel{\ensuremath{\rightarrow}}{p}$,$t$), $E=22.0$ MeV; measured $\ensuremath{\sigma}(\ensuremath{\theta})$, ${A}_{y}(\ensuremath{\theta})$; enriched targets.
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