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- W1488641444 abstract "The ($^{6}mathrm{Li},t$) reaction was studied with a 34-MeV $^{6}mathrm{Li}$ beam on enriched targets of $^{24}mathrm{Mg}$, $^{28}mathrm{Si}$, $^{54}mathrm{Fe}$, $^{56}mathrm{Fe}$, and $^{58}mathrm{Ni}$. The tritons were momentum analyzed in a quadrupole-dipole-dipole-dipole magnetic spectrograph and detected with a 1-m helical cathode proportional counter that covered about 4 MeV of excitation. Cross sections for the ($^{6}mathrm{Li},t$) reaction to strongly excited states are generally in the range of 1 to 10 ensuremath{mu}b/sr with exceptions up to 50 ensuremath{mu}b/sr. Comparisons are made, where possible, between the selectivity of this reaction and other reactions leading to the same final nuclei. A similarity with single-neutron stripping is observed, which suggests a ($^{6}mathrm{Li},t$) reaction mechanism involving direct transfer of a proton-pair coupled to a single neutron. The possible two-step process ($^{6}mathrm{Li},d$) ($d,t$) is also suggested to account for two cases of ${f}_{frac{7}{2}}$ hole states populated in the nickel isotopes. The $^{58}mathrm{Ni}(^{6}mathrm{Li},t)^{61}mathrm{Zn}$ $Q$ value was measured to be -4736 ifmmodepmelsetextpmfi{} 23 keV giving a mass excess of -56 352ifmmodepmelsetextpmfi{}26 keV for $^{61}mathrm{Zn}$. This mass excess is believed to be more reliable than previous measurements with other techniques that differ by 500 keV. The triton spectrum for the $^{58}mathrm{Ni}(^{6}mathrm{Li},t)^{61}mathrm{Zn}$ reaction yields the first measurement of the energy levels of $^{61}mathrm{Zn}$.[NUCLEAR REACTIONS $^{24}mathrm{Mg}(^{6}mathrm{Li},t)$, $^{28}mathrm{Si}(^{6}mathrm{Li},t)$, $^{54}mathrm{Fe}(^{6}mathrm{Li},t)$, $^{56}mathrm{Fe}(^{6}mathrm{Li},t)$, $^{58}mathrm{Ni}(^{6}mathrm{Li},t)$, ${E}_{^{6}mathrm{Li}}=34$ MeV; enriched targets, Q3D spectrograph, measured $frac{densuremath{sigma}}{densuremath{Omega}}$, ${E}_{t}$, energy levels $^{27}mathrm{Si}$, $^{31}mathrm{S}$, $^{57}mathrm{Ni}$, $^{59}mathrm{Ni}$, $^{61}mathrm{Zn}$; mass $^{61}mathrm{Zn}$; reaction mechanism discussed, correspondence with single-neutron transfer noted.]" @default.
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