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Exploring dissipative processes at high angular momentum in58Ni+60Ni reactions

机译:在58Ni + 60ni反应中探索高角动量的耗散过程

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摘要

Current coupled channels (CC) models treat fusion as a coherent quantum-mechanical process, in which coupling between the collective states of the colliding nuclei influences the probability of fusion in near-barrier reactions. While CC models have been used to successfully describe many experimental fusion barrier distribution (BD) measurements, the CC approach has failed in the notable case of 16O+208Pb. The reason for this is poorly understood; however, it has been postulated that dissipative processes may play a role. Traditional BD experiments can only probe the physics of fusion for collisions at the top of the Coulomb barrier (L = 0ħ). In this work, we will present results using a novel method of probing dissipative processes inside the Coulomb barrier. The method exploits the predicted sharp onset of fission at L ~ 60ħ for reactions forming compound nuclei with A < 160. Using the ANU’s 14UD tandem accelerator and CUBE spectrometer, reaction outcomes have been measured for the 58Ni+60Ni reaction at a range of energies, in order to explore dissipative processes at high angular momentum. In this reaction, deep inelastic processes have been found to set in before the onset fission at high angular momentum following fusion. The results will be discussed in relation to the need for a dynamical model of fusion.
机译:电流耦合信道(CC)模式对待融合作为相干量子力学过程,其中,所述碰撞核影响融合在近屏障反应的概率的集合状态之间的耦合。虽然CC模型已经成功用于描述很多实验聚变屏障分布(BD)测量,CC的做法已经失败在16O + 208Pb的值得注意的情况。这样做的原因是知之甚少;然而,据推测,耗散过程中可能发挥的作用。传统的BD实验只能在库仑势垒(L = OH)的顶部探测融合的用于碰撞的物理过程。在这项工作中,我们将使用探测库仑势垒内部耗散过程的新颖方法显示结果。该方法利用〜60H用于形成具有复合核反应<160使用ANU的14UD串列式加速器和CUBE光谱仪,反应的结果已在一个能量范围的测量为58Ni + 60Ni反应为L裂变的预测尖锐发作,为了探索在高角动量耗散的过程。在该反应中,深部非弹性过程已经在高角动量以下融合发作之前裂变发现集英寸结果将在相对于需要融合的动力学模型进行讨论。

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