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Single-Particle Structure Observed In Radioactive-Beam Experiments

机译:放射性束实验中观察到的单颗粒结构

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It has been demonstrated that single-nucleon knockout reactions in inverse kinematics at energies above 50 MeVucleon are a powerful spectroscopic tool for identifying single-particle structure. Partial and differential cross sections to individual final levels are obtained by measuring the momentum of the projectile residue with a high-resolution spectrograph in coincidence with gamma rays. The shape of the longitudinal momentum spectra identifies the orbital angular momentum l, while the absolute cross sections determine single-nucleon spectroscopic factors. Examples of results with this technique are given. The method has an extremely high sensitivity, and experiments have been carried out with incident beams of less than one atom/second. An analysis of precise data from high-energy experiments suggests that the method furnishes absolute occupancies and will allow the study of short-range correlations caused by the hard core in the nucleon-nucleon interaction. For the deeply bound p-shell neutron states of ~(16)O and ~(12)C the occupancies are reduced by factors Rs of 0.56(3) and 0.51(3), respectively, relative to the many-body shell model with effective interactions. Data for weakly bound neutron and proton states in radioactive nuclei suggests Rs values much closer to unity. We expect that the nuclear knockout method, in addition to being a tool for structure studies, will contribute to the understanding of the fundamentals of the shell model.
机译:已经证明,在反向运动学中,能量高于50 MeV /核子的单核子敲除反应是识别单粒子结构的强大光谱工具。通过使用高分辨率光谱仪与伽马射线相符的方法测量弹丸残渣的动量,可以得到部分和不同横截面的最终水平。纵向动量谱的形状确定了轨道角动量l,而绝对截面确定了单核子光谱因子。给出了使用该技术的结果示例。该方法具有极高的灵敏度,并且已经用小于一原子/秒的入射光束进行了实验。对来自高能实验的精确数据的分析表明,该方法提供了绝对的占有率,并将允许研究由硬核在核子-核子相互作用中引起的短程相关性。对于〜(16)O和〜(12)C的深束缚p壳中子态,相对于多体壳模型,占有率分别降低0.56(3)和0.51(3)倍。有效的互动。放射性核中弱束缚的中子和质子态的数据表明Rs值更接近于统一。我们希望,核敲除方法除了作为结构研究的工具之外,还将有助于理解壳模型的基本原理。

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