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- W2322201217 abstract "Neutron hole states in $N=49$ nuclei were studied with the ($^{3}mathrm{He}$, $ensuremath{alpha}$) reaction on $^{89}mathrm{Y}$ and $^{86}mathrm{Kr}$. Spectroscopic information was obtained from a distorted-wave Born-approximation analysis. Various optical potential wells were used. The results were compared and found to be in good agreement with each other. In $^{88}mathrm{Y}$, the ground state and the first excited state (0.40 MeV) are excited by $1{g}_{frac{9}{2}}$ neutron pickup. The coupling of the unpaired $2{p}_{frac{1}{2}}$ proton to the $1{g}_{frac{9}{2}}$ neutron hole yields ${4}^{ensuremath{-}}$ and ${5}^{ensuremath{-}}$ states. Assuming that these two states represent the total $T<{g}_{frac{9}{2}}$ neutron pickup strength in $^{89}mathrm{Y}$, the sum of their spectroscopic factors is normalized to 10. Using the same normalization factor for $^{85}mathrm{Kr}$ states, the spectroscopic factor for the ground state excited by $1{g}_{frac{9}{2}}$ neutron pickup represents only 60% of the total $T<{g}_{frac{9}{2}}$ neutron pickup strength. Two other possible ${frac{9}{2}}^{+}$ neutron hole states were observed at 1.89- and 2.03-MeV excitation. Spectroscopic information about other neutron hole states observed is also presented." @default.
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- W2322201217 date "1968-12-20" @default.
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- W2322201217 title "(He3,α) Reaction onY89andKr86at 18 MeV" @default.
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- W2322201217 doi "https://doi.org/10.1103/physrev.176.1339" @default.
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