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Luneburg-lens-like universal structural Pauli attraction in nucleus-nucleus interactions: Origin of emergence of cluster structures and nuclear rainbows

机译:Luneburg-镜头般的普通结构Pauli吸引力核 - 核相互作用:集群结构的出现起源和核彩虹

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摘要

The Pauli exclusion principle plays an important role in many-body fermion systems, preventing them from collapsing by repulsion. For example, the Pauli principle causes a repulsive potential at short distances between two a particles. On the other hand, the existence of nuclear rainbows demonstrates that the internuclear potential is sufficiently attractive in the internal region to cause refraction. The two concepts of repulsion and attraction are seemingly irreconcilable. Contrary to traditional understanding, it is shown that the Pauli principle causes a universal structural Pauli attraction between nuclei rather than a structural repulsive core. Through systematic studies of alpha + alpha, alpha + O-16, alpha + Ca-40, and O-16 + O-16 systems, it is shown that the emergence of cluster structures near the threshold energy at low energies and nuclear rainbows at high energies is a direct consequence of the Pauli principle.
机译:Pauli排除原则在许多士兵系统中起着重要作用,防止它们通过排斥来坍塌。 例如,Pauli原理在两个颗粒之间的短距离下导致排斥潜力。 另一方面,核彩虹的存在表明,在内部区域中的核潜力足够有吸引力以引起折射。 排斥和吸引力的两个概念看似不可调和。 与传统的理解相反,表明保罗里的原则导致核之间的普遍结构保罗,而不是结构排斥核心。 通过对α+α,α+ O-16,α+ CA-40和O-16 + O-16系统的系统研究,表明在低能量和核彩虹处的阈值能量附近的集群结构的出现 高能量是保利原则的直接后果。

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