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- W3148009049 abstract "Proton-$ensuremath{gamma}$-ray coincidence measurements have been made on the reactions $^{31}mathrm{P}(^{3}mathrm{He},pensuremath{gamma})^{33}mathrm{S}$ and $^{39}mathrm{K}(^{3}mathrm{He},pensuremath{gamma})^{41}mathrm{Ca}$ at incident $^{3}mathrm{He}$ energies of 12 and 13 MeV. The protons were detected at 0ifmmode^circelsetextdegreefi{} to the beam direction, thereby preferentially selecting $L=0$ transfers of neutron-proton pairs. A Ge(Li) detector at 90ifmmode^circelsetextdegreefi{} detected the $ensuremath{gamma}$ rays with good energy resolution. Angular distributions for the $^{31}mathrm{P}(^{3}mathrm{He},p)^{33}mathrm{S}$ reaction were measured with a magnetic spectrograph. These, together with previous results on the $^{39}mathrm{K}(^{3}mathrm{He},p)^{41}mathrm{Ca}$ reaction, gave precise information on the intensities of the states excited, as well as their energies. The main purpose of the experiments was to measure the $ensuremath{gamma}$ decay of the lowest-lying isobaric analog states in $^{33}mathrm{S}$ and $^{41}mathrm{Ca}$. The analog state in $^{33}mathrm{S}$ was found to decay primarily (85%) to the 842-keV level and secondarily (15%) to the ground state. The analog state in $^{41}mathrm{Ca}$ decays in a more complex fashion to several states. The strongest transition (55%) is to the 4091-keV state. $ensuremath{gamma}$-ray decay schemes for several other low-lying even-parity levels in $^{33}mathrm{S}$ and $^{41}mathrm{Ca}$ were also measured. The observation that the 4091-keV level of $^{41}mathrm{Ca}$ decays (34%) to the ${frac{7}{2}}^{ensuremath{-}}$ ground state and (58%) to the ${frac{3}{2}}^{+}$ level at 2009 keV suggests a ${frac{5}{2}}^{+}$ assignment. The implications of the measurements are discussed, particularly with reference to the structure of low-lying two-particle-one-hole states in these nuclei." @default.
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- W3148009049 date "1971-09-01" @default.
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- W3148009049 title "P31(He3,pγ)S33andK39(He3,pγ)Ca41Reactions and theγDecay of Analog States inS33andCa41" @default.
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- W3148009049 doi "https://doi.org/10.1103/physrevc.4.818" @default.
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