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- W1602858667 abstract "A differentially pumped windowless $^{20}mathrm{Ne}$ gas target and a $^{20}mathrm{Ne}$ beam produced with the ATLAS accelerator at Argonne National Laboratory were used to measure angle-averaged excitation functions for binary decay of $^{20}mathrm{Ne}$${+}^{20}$Ne into low-lying states of $^{20}mathrm{Ne}$${+}^{20}$Ne and $^{24}mathrm{Mg}$${+}^{16}$O, in the region of excitation energy in $^{40}mathrm{Ca}$ from 51.4 to 58.2 MeV ${(}^{20}$Ne beam energies from 61.8 to 75.4 MeV). The $^{20}mathrm{Ne}$${+}^{20}$Ne mass partition displays little correlated structure and there exists no evidence of intermediate width resonances in these channels with branching ratios comparable to those seen in the $^{24}mathrm{Mg}$${+}^{24}$Mg system. Angular distributions for the elastic channel are consistent with those obtained using optical-model calculations. The exictation functions for the low-lying channels in $^{24}mathrm{Mg}$${+}^{16}$O do contain some structures, with widths varying from 400 to 800 keV in the c.m. system." @default.
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- W1602858667 date "1995-04-01" @default.
- W1602858667 modified "2023-10-18" @default.
- W1602858667 title "Excitation functions of theNe20+20Ne system" @default.
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- W1602858667 doi "https://doi.org/10.1103/physrevc.51.1961" @default.
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