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- W1984930377 abstract "Angular distributions for the $^{124}mathrm{Sn}(p, t)$ reaction to low-lying ${3}^{ensuremath{-}}$, ${4}^{+}$, ${5}^{ensuremath{-}}$, ${6}^{+}$, ${7}^{ensuremath{-}}$, ${8}^{+}$, and ${10}^{+}$ two-quasiparticle states of $^{122}mathrm{Sn}$ were measured at ${E}_{p}=34.9, 45.1, 54.7, mathrm{and} 65.0$ MeV and analyzed with zero-range distorted-wave Born approximation theory. The shapes of the angular distributions are reasonably well reproduced with the zero-range theory using one average optical potential set and the deduced enhancement factors are almost constant with smoothly decreasing zero-range normalization constants as a function of the incident energy.NUCLEAR REACTIONS $^{124}mathrm{Sn}(p, t)$, ${E}_{p}=34.9, 45.1, 54.7, mathrm{and} 65.0$ MeV; measured $ensuremath{sigma}({E}_{t}, ensuremath{theta})$ absolute. DWBA analysis, zero-range, energy dependence of enhancement factors. Enriched target." @default.
- W1984930377 created "2016-06-24" @default.
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- W1984930377 date "1983-06-01" @default.
- W1984930377 modified "2023-09-25" @default.
- W1984930377 title "Energy dependence of theSn124(p, t)reaction to the3−-10+two-quasiparticle states ofSn122at incident energies of 34.9, 45.1, 54.7, and 65.0 MeV" @default.
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- W1984930377 doi "https://doi.org/10.1103/physrevc.27.2598" @default.
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