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- W2282162341 abstract "Six neutron groups from the ${mathrm{F}}^{19}(d, n){mathrm{Ne}}^{20}$ reaction corresponding to the lowest states in ${mathrm{Ne}}^{20}$ have been observed at six angles of observation. The major part of the experiment employed nuclear emulsions and an average deuteron energy of 3.57 Mev. The importance of stripping appears to depend on the particular level involved; in particular, angular distributions leading to unambiguous assignments by stripping theory appear only for the ground, 1.63-Mev, and 6.75-Mev levels. The ground-state assignment appears to be energy dependent when the present ${l}_{p}=2$ value is compared to the ${l}_{p}=0$ value previously reported for a higher bombarding energy. The 4.25-Mev level in ${mathrm{Ne}}^{20}$ gives rise to an angular distribution which could be either ${l}_{p}=2$ or ${l}_{p}=3$, but the fit to theory is not satisfactory for either case. A qualitative argument is given favoring the latter value. No assignment can be made to the 4.97- and 5.63-Mev levels.A brief second experiment with a fast neutron spectrometer was performed in order to obtain an absolute differential cross section at 0ifmmode^circelsetextdegreefi{} for ${mathrm{Ne}}^{20}$ left in its 6.75-Mev level. The reduced width obtained from this cross section is compared with a published reduced width for this same level obtained by elastic scattering of alpha particles by ${mathrm{O}}^{16}$." @default.
- W2282162341 created "2016-06-24" @default.
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- W2282162341 date "1961-05-01" @default.
- W2282162341 modified "2023-09-24" @default.
- W2282162341 title "Low-Lying Energy States inNe20from theF19(d, n)Ne20Reaction" @default.
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- W2282162341 doi "https://doi.org/10.1103/physrev.122.874" @default.
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