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Two-neutron knockout as a probe of the composition of states in Mg-22, Al-23, and Si-24

机译:两个中子敲除作为Mg-22,Al-23和Si-24中的状态的组成探针

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Simpson and Tostevin proposed that the width and shape of exclusive parallel momentum distributions of the A - 2 residue in direct two-nucleon knockout reactions carry a measurable sensitivity to the nucleon single-particle configurations and their couplings within the wave functions of exotic nuclei. We report here on the first benchmarks and use of this new spectroscopic tool. Exclusive parallel momentum distributions for states in the neutron-deficient nuclei Mg-22, Al-23, and Si-24 populated in such direct two-neutron removal reactions were extracted and compared to predictions combining eikonal reaction theory and shell-model calculations. For the well-known Mg-22 and Al-23 nuclei, measurements and calculations were found to agree, supporting the dependence of the parallel momentum distribution width on the angular momentum composition of the shell-model two-neutron amplitudes. In Si-24, a level at 3439(9) keV, of relevance for the important Al-23(p, gamma) Si-24 astrophysical reaction rate, was confirmed to be the 2(2)(+) state, whereas the 4(1)(+) state, expected to be strongly populated in two-neutron knockout, was not observed. This puzzle is resolved by theoretical considerations of the Thomas-Ehrman shift, which also suggests that a previously reported 3471-keV state in Si-24 is, in fact, the (0(2)(+)) level with one of the largest experimental mirror-energy shifts ever observed.
机译:SIMPSON和TOSTEVIN提出了A - 2残基的专用平行动量分布的宽度和形状在直接的双核敲除反应中对核子单颗粒构造的可测量敏感性及其在异国核的波函数内的偶联。我们在此报告的第一个基准测试和使用这种新的光谱效果。提取中子缺乏核核Mg-22,Al-23和Si-24中的状态的专用平行动量分布,并将其与尖端反应理论和壳模型计算结合的预测进行了比较。对于众所周知的MG-22和Al-23核,发现测量和计算达成一致,支持平行动量分布宽度对壳模型两节中子幅度的角动量组成的依赖性。在SI-24中,确认了关于重要的Al-23(P,GAMMA)Si-24天体物理反应率的相关性的3439(9)keV的水平是2(2)(+)状态,而是未观察到4(1)(+)状态,预计将受到在两个中子敲除的强烈填充。这种拼图是通过托马斯 - Ehrman转变的理论考虑来解决的,这也表明先前报道的SI-24中的3471 keV状态实际上是(0(2)(+))水平,其中一个水平观察到的实验镜 - 能量偏移。

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