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The investigation of the beta decay of 46K: Detailed spectroscopy of the low-lying structure of 46Ca with the GRIFFIN Spectrometer

机译:46K的β衰变研究:使用GRIFFIN光谱仪对46Ca的低洼结构进行详细光谱分析

摘要

The calcium region is currently a new frontier for modern shell model calculations, and detailed experimental data from these nuclei is critical for a comprehensive understanding of the region.Due to its very low natural abundance of 0.004%, the structure of the magic nucleus 46Ca has not been studied in great detail. Some excited states were previously identified by various reaction mechanisms, and few gamma rays were placed in the level scheme from results of beta-decay experiments equipped with limited detection capabilities. A high-statistics data set of the beta decay of the 46K 2- ground state into the excited states of 46Ca was measured with the GRIFFIN spectrometer located at TRIUMF-ISAC in December of 2014. A radioactive beam consisting almost entirely of 46K was implanted at the center of the GRIFFIN array, and the emitted gamma rays were detected by 15 high-purity germanium clover detectors. From forty hours of data collection, 430 million gamma-gamma coincidences were observed and analysed to construct the 46Ca level scheme. In total, 194 gamma rays were identified and placed into the level scheme; 150 of these transitions were observed for the first time. Angular correlations between pairs of gamma rays were analysed to investigate the spin assignments of the observed excited states. Correlations were investigated for 18 of the 42 observed excited states, and it was possible to confirm 7 previously reported spin assignments, and assign 3 new spins of 3-, 2-, and 3- for the 4435, 5052, and 5535 keV states, respectively. The measured half-life of the 96.41(10) s is in agreement with previous results. From the observed beta feeding intensities of this work, it is suggested that the 46K 2- ground state may contain more proton s1/2 character than has been previously believed. This is due to the strong population of the 5052 keV 2$^-$ state and the absence of observed feeding to the 46Ca ground state.
机译:钙区域目前是现代壳模型计算的一个新领域,来自这些核的详细实验数据对于全面了解该区域至关重要。由于其0.004%的极低自然丰度,魔核46Ca的结构具有没有详细研究。先前已通过各种反应机制识别了一些激发态,并且从装备有限的检测能力的β衰变实验的结果中,很少有人将γ射线置于能级图中。 2014年12月,使用位于TRIUMF-ISAC的GRIFFIN光谱仪测量了46K 2-基态到46Ca激发态的β衰变的高统计数据集。在15个高纯度锗三叶草检测器中检测到了GRIFFIN阵列的中心,并发射了伽马射线。从40个小时的数据收集中,观察到并分析了4.3亿个伽玛-伽玛巧合,以构建46Ca级方案。总共识别出194条伽玛射线,并将其放置在水准仪中。首次观察到这些过渡中的150次。分析了伽马射线对之间的角度相关性,以研究观察到的激发态的自旋分配。研究了42种观察到的激发态中的18种相关性,可以确认先前报告的7种自旋分配,并为4435、5052和5535 keV态分配3种新的3、2-和3-自旋,分别。测得的96.41(10)s半衰期与先前的结果一致。从观察到的这项工作的β进料强度,可以认为46K 2-基态可能比以前认为的具有更多的质子s1 / 2特征。这是由于5052 keV 2 $ ^-$状态的人口众多,并且没有观察到对46Ca基态的馈电。

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    Pore Jennifer Louise;

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