Nucleon-nucleon correlations inside atomic nuclei: synergies, observations and theoretical models.

Ranjeet Dalal, I J Douglas MacGregor
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Abstract

While the main features of atomic nuclei are well described by nuclear mean-field models, there is a large and growing body of evidence which indicates an important additional role played by spatially-correlated nucleon-nucleon structures. The role of nucleonic structures was first suggested by Heidmann in 1950 to explain the pick-up reactions of energetic nucleons. Since then, a steady flux of new experimental evidence has confirmed the presence of similar structures inside atomic nuclei, dominated by correlations between pairs of nucleons. The role of these internal nucleon-nucleon correlations has been established using various energetic probes like photons, pions, leptons and hadrons. These correlated structures are essential for understanding the interaction of particles with nuclei and their presence provides an explanation of many specific nuclear phenomena, including backscattered protons, copious deuteron production, sub-threshold particle production, neutrino interactions with nuclei and the European Muon Collaboration effect. On the theoretical side, these measurements have stimulated a large number of phenomenological models specifically devised to address these enigmatic observations. While reviews exist for specific interactions, there is currently no published commentary which systematically encompasses the wide range of experimental signatures and theoretical frameworks developed thus far. The present review draws together the synergies between a wide range of different experimental and theoretical studies, summarizes progress in this area and highlights outstanding issues for further study.

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原子核内的核子-核子相关性:协同、观测和理论模型。
虽然原子核的主要特征可以用核平均场模型很好地描述,但大量且越来越多的证据表明,空间相关的核子-核子结构还发挥着重要作用。核子结构的作用最早是由海德曼于 1950 年提出的,用来解释高能核子的拾取反应。从那时起,不断涌现的新实验证据证实了原子核内部存在类似的结构,主要是核子对之间的相关性。利用光子、小离子、轻子和强子等各种高能探针,这些内部核子-核子关联的作用已经得到证实。这些相关结构对于理解粒子与原子核的相互作用至关重要,它们的存在为许多特定的核现象提供了解释,包括质子后向散射、大量氘核产生、亚阈值粒子产生、中微子与原子核的相互作用以及 EMC 效应。在理论方面,这些测量结果激发了大量的现象学模型,这些模型是专门针对这些神秘的观测结果而设计的。虽然已有针对特定相互作用的综述,但目前还没有发表系统地涵盖迄今为止广泛的实验特征和理论框架的评论。本评论汇集了大量不同实验和理论研究之间的协同作用,总结了这一领域的进展,并强调了有待进一步研究的未决问题。
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