2007
DOI: 10.1016/j.nuclphysa.2007.09.007
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Contributions of complete fusion and break-up–fusion to intermediate mass fragment production in the low energy interaction of 12C and 27Al

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Cited by 1 publication
(2 citation statements)
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References 34 publications
(105 reference statements)
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“…Present data miss high energy components of light mass fragments, Li and Be, due to insufficient detector thickness, however the data covers energy range for relatively higher yield. Figure 6 shows double differential cross sections of the Al(C,x) reaction for E C = 144 MeV, at 30 degrees emission angle in comparison with one for E He = 158 MeV, at 30 degrees by S.V.Fortsch et al [11]. Present data for 144 MeV seems to be consistent with data for 158 MeV.…”
Section: Methodssupporting
confidence: 70%
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“…Present data miss high energy components of light mass fragments, Li and Be, due to insufficient detector thickness, however the data covers energy range for relatively higher yield. Figure 6 shows double differential cross sections of the Al(C,x) reaction for E C = 144 MeV, at 30 degrees emission angle in comparison with one for E He = 158 MeV, at 30 degrees by S.V.Fortsch et al [11]. Present data for 144 MeV seems to be consistent with data for 158 MeV.…”
Section: Methodssupporting
confidence: 70%
“…Bhattacharya et al reports asymmetric binary splitting of the compound nucleus and another mechanism for Li and Be at forward angle in his paper for the 27 Al(He,x) reaction at E he = 60 MeV [10]. Förtsch et al reports contribution of complete fusion and break-up-fusion to intermediate mass a e-mail: toshiya.sanami@kek.jp fragment production for the 27 Al( 12 C,x) reaction at E 12C = 156 MeV [11]. Motobayashi et al pointed out α-transfer reactions between light nuclei through calculation [12].…”
Section: Introductionmentioning
confidence: 99%