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Cluster correlation effects in 12C+12C and 14N+10B fusion-evaporation reactions

机译:12C + 12C和14N + 10B熔融蒸发反应中的簇相关效应

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The decay of highly excited states of 24Mg is studied in fusion evaporation events completely detected in charge in the reactions 12C+12C and 14N+10B at 95 and 80 MeV incident energy respectively. The comparison of light charged particles measured spectra with statistical model predictions suggests that the dominant reaction mechanism is compound nucleus (CN) formation and decay. However, in both reactions, a discrepancy with statistical expectations is found for α particles detected in coincidence with Carbon, Oxigen and Neon residues. The comparison between the two reactions shows that this discrepancy is only partly explained by an entrance channel effect. Evidence for cluster correlations in excited 24Mg CN is suggested by the comparison between the measured and calculated branching ratios for the channels involving α particles.
机译:在分别以95 MeV和80 MeV入射能在反应12C + 12C和14N + 10B中完全检测到的聚变蒸发事件中,研究了24Mg高激发态的衰减。将带电粒子的实测光谱与统计模型预测进行比较表明,主要的反应机理是化合物核(CN)的形成和衰减。然而,在这两个反应中,发现与碳,氧和氖残基同时发现的α颗粒与统计期望值存在差异。两种反应之间的比较表明,这种差异仅部分由入口通道效应解释。通过对涉及α粒子的通道的测量和计算分支比进行比较,可以得出激发的24Mg CN中的簇相关性的证据。

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