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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Near-barrier Fusion and Breakup/Transfer induced by Weakly Bound and Exotic Halo Nuclei
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Near-barrier Fusion and Breakup/Transfer induced by Weakly Bound and Exotic Halo Nuclei

机译:弱束缚和外来晕环核诱导的近壁垒融合和分解/转移

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摘要

The influence on the fusion process of coupling to collective degrees of freedom has been explored. The significant enhancement of the fusion cross section at sub-barrier energies was compared to predictions of one-dimensional barrier penetration models. This was understood in terms of the dynamical processes arising from strong couplings to collective inelastic excitations of the target and projectile. However, in the case of reactions where at least. one of the colliding nuclei has a sufficiently low binding energy, for breakup to become an important process, conflicting model predictions and experimental results have been reported in the literature. Excitation functions for sub- and near-barrier total (complete + incomplete) fusion cross sections have been measured for the Li-6,Li-7+(CO)-C-59 reactions. Elastic scattering as well as break up/ transfer yields have also been measured at several incident energies. Results of Continuum-Discretized Coupled-Channel (C-DCC) calculations describe reasonably well the experimental data for both reactions at and above the barrier. A systematic study of He-4,He-6 induced fusion reactions with a three-body C-DCC method is presented. The relative importance of breakup and bound-state structure effects on total fusion (excitation functions) is particularly investigated. The four-body C-DCC model is being currently developed.
机译:已经探讨了耦合到集体自由度对融合过程的影响。将亚势垒能量处的融合截面的显着增强与一维势垒穿透模型的预测进行了比较。从动力学过程中可以理解这一点,因为动力学过程是对目标和弹丸的集体非弹性激励的强烈耦合。但是,至少在反应的情况下。碰撞核之一具有足够低的结合能,对于破裂成为重要过程,文献报道了相矛盾的模型预测和实验结果。对于Li-6,Li-7 +(CO)-C-59反应,已测量了亚势垒和近势垒总(完全+不完全)融合截面的激发函数。还已经在几种入射能量下测量了弹性散射以及分解/转移产率。连续离散耦合通道(C-DCC)的计算结果很好地描述了在屏障处及屏障上方的反应的实验数据。提出了利用三体C-DCC方法对He-4,He-6诱导的融合反应进行系统研究。特别研究了断裂和束缚态结构对总聚变(激发函数)的相对重要性。目前正在开发四体C-DCC模型。

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