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Breakup following interactions with light targets: Investigating new methods to probe nuclear physics input to the cosmological lithium problem

机译:与轻型目标相互作用的分解:研究探测核物理学输入到宇宙学锂问题的新方法

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A well known issue with concordance cosmology is the cosmological lithium problem, where models of Big Bang Nucleosynthesis indicate abundances of ~7Li three to four times larger than values inferred via spectroscopic measurements of metal-poor halo stars [1]. Since the source of this discrepancy remains unclear [2], it is vital to fully understand the nuclear reactions that affect the production of ~7Li during the Big Bang [3]. At the Australian National University, experimental equipment and analysis techniques have been developed for nuclear reaction studies at energies near the fusion barrier, exploiting large solid angle detectors to enable the investigation of breakup without a priori assumption of the breakup kinematics. The extension to reactions of astrophysical interest may help shed light on these reactions. Recent experiments, using these new techniques, have provided a complete picture of the breakup mechanisms of light nuclei in collisions with heavy targets [4]. The present work focuses on obtaining a complete picture of breakup mechanisms of ~7Li following interactions with ~(27)Al. It has been found that breakup is almost exclusively triggered by nucleon transfer between the colliding partners, to a larger extent than was found for heavier targets. The findings of these experiments, as well as progress towards extensions to astrophysically relevant reactions, such as d + ~7Be [5] will be presented.
机译:与一致性宇宙学的公知问题是宇宙锂问题,其中大爆炸核合成的模型表明〜7Li的丰度比通过的贫金属晕星[1]的光谱测量值推断出较大的三到四倍。由于这种差异的来源尚不清楚[2],至关重要的是要充分认识到,影响大爆炸[3]在生产7Li的〜的核反应。在澳大利亚国立大学,实验设备和分析技术已经开发了用于核反应研究在靠近融合屏障能量,利用大的立体角探测器,使解体不解体运动学的先验假设调查。扩展到天体物理感兴趣的反应可能有助于对这些反应线索。最近的实验中,使用这些新技术,在重指标[4]的冲突提供了轻核解体机制的全貌。目前的工作重点放在获取与〜(27)铝〜7Li的以下交互的解体机制的完整画面。它已经发现,分手几乎完全由碰撞伙伴之间的核子转移触发,在更大程度上比被发现的重目标。这些实验的进展扩展天体物理学相关反应,如d +〜的7Be的结果,以及,[5]将提交。

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