论文标题

质子滴度的束内$γ$ -Ray光谱:$^{40} $ sc

In-beam $γ$-ray spectroscopy at the proton dripline: $^{40}$Sc

论文作者

Gade, A., Weisshaar, D., Brown, B. A., Tostevin, J. A., Bazin, D., Brown, K., Charity, R. J., Farris, P. J., Hill, A. M., Li, J., Longfellow, B., Reviol, W., Rhodes, D.

论文摘要

我们在质子二滴核的第一个内束内$γ$ -Ray光谱$^{40} $ sc使用两核拾音器上的$^{38} $ ca的中间能量稀有异位孔上的中间 - 能量稀有 - 相互拾音器。 $^{9} $ be($^{38} $ ca,$^{40} $ sc $+γ$)x反应在60.9 meV/nucleon mid-target能量中,在$^{40} $ sc中选择性地填充了状态,为此,转移的质子和中子夫妇转移到了高眶角动量。反过来,由于质子发射中的角度摩托明选项规则以及$^{39} $ ca的核结构和能量学,但在$^{40} $ sc中的这种状态随后展示了$γ$ - decay分支,尽管它们远高于质子分离能。这项工作是由$^{40} $ ca以及$^{40} $ ti ec/$β^+$衰变在$^{40} $ ca上的电荷交换反应之后的粒子光谱结果的独特补充。与镜像核和壳模型计算相比,讨论了先前已知的第一个$(5^ - )$状态的人口和$γ$射线的衰减,并在2744 KEV处观察到2744 KEV的新水平。在实验方面,这项工作表明,具有新一代GE阵列可用于稀有 - 异位梁梁在横截面的几美元$ $ b的水平上引起的反应,因此可以进行高分辨率内$γ$ -RAY光谱。

We report on the first in-beam $γ$-ray spectroscopy of the proton-dripline nucleus $^{40}$Sc using two-nucleon pickup onto an intermediate-energy rare-isotope beam of $^{38}$Ca. The $^{9}$Be($^{38}$Ca,$^{40}$Sc$+γ$)X reaction at 60.9 MeV/nucleon mid-target energy selectively populates states in $^{40}$Sc for which the transferred proton and neutron couple to high orbital angular momentum. In turn, due to angular-momentum selection rules in proton emission and the nuclear structure and energetics of $^{39}$Ca, such states in $^{40}$Sc then exhibit $γ$-decay branches although they are well above the proton separation energy. This work uniquely complements results from particle spectroscopy following charge-exchange reactions on $^{40}$Ca as well as $^{40}$Ti EC/$β^+$ decay which both display very different selectivities. The population and $γ$-ray decay of the previously known first $(5^-)$ state at 892 keV and the observation of a new level at 2744 keV are discussed in comparison to the mirror nucleus and shell-model calculations. On the experimental side, this work shows that high-resolution in-beam $γ$-ray spectroscopy is possible with new generation Ge arrays for reactions induced by rare-isotope beams on the level of a few $μ$b of cross section.

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