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Angular momentum transfer in incomplete fusion

机译:不完全融合中的角动量传递

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Isomeric cross-section ratios of evaporation residues formed in12C+93Nb and16O+89Y reactions were measured by recoil catcher technique followed by off-line γ-ray spectrometry in the beam energy range of 55.7–77.5 MeV for12C and 68–81 MeV for16O. The isomeric cross-section ratios were resolved into that for complete and incomplete fusion reactions. The angular momentum of the intermediate nucleus formed in incomplete fusion was deduced from the isomeric cross-section ratio by considering the statistical deexcitation of the incompletely fused composite nucleus. The data show that incomplete fusion is associated with angular momenta slightly smaller than critical angular momentum for complete fusion, indicating the deeper interpenetration of projectile and target nuclei than that in peripheral collisions.
机译:测量了在 12 C + 93 Nb和 16 O + 89 Y反应中形成的蒸发残留物的横截面比率通过反冲捕集器技术,然后进行离线γ射线光谱分析,对于 12 C,束能量为55.7–77.5 MeV,对于 16 O,束能量为68–81 MeV。将异构体的横截面比率解析为完全和不完全融合反应的比率。考虑到不完全融合的复合核的统计去激,由异构体的横截面比推导了不完全融合形成的中间核的角动量。数据表明,不完全融合的角动量略小于完全融合的临界角动量,表明射弹与目标核的互穿程度比周围碰撞要深。

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