论文标题
$^{7} $ h中的共鸣。 I. $^2 $ h($^8 $ he,$^3 $ He)的实验研究
Resonant states in $^{7}$H. I. Experimental studies of the $^2$H($^8$He,$^3$He) reaction
论文作者
论文摘要
在直接$^2 $ h($^8 $ he,$^3 $ he)中研究了极其中子的系统$^{7} $ h,$^3 $ he)$^7 $ h传输反应,带有26 AMEV中级$^{8} $ he beam [Bezbakh等人,物理。莱特牧师。 124(2020)022502]。构建了$^{7} $ H的质量谱和质量中心(C.M.)角度分布,以及在$^{7} $ h框架中$^{3} $ h片段的动量分布。除了参考文献中报告的调查。 [Bezbakh等人,物理。莱特牧师。 124(2020)022502],我们对相同的光束进行了另一个实验,但修改了设置,该设置通过研究$^2 $ h($^{10} $ BE,$^3 $ HE $)^{9} $ li反应进行了交叉检查。有一个可靠的实验证据表明,相对于$^3 $ h+4 $ n $ n $衰减阈值,两个$^{7} $ H的共振状态位于2.2(5)和5.5(3)MEV。另外,有迹象表明,在测量的$^{7} $ h Spectrum中存在7.5(3)和11.0(3)和11.0(3)MEV的共振状态。根据能量和角度分布,为所研究的$^2 $ h($^8 $ he,$^3 $ he)$^7 $ h反应,人口稠密的2.2(5)MEV峰归因于$^7 $ h地面状态。牢固确定的5.5(3)MEV状态是$^7 $ h激发的成员$ 5/2^+$ - $ 3/2^+$ Doublet,这是非常合理的。所谓的7.5 MEV状态可以是该双打的另一个成员,在参考文献中无法解决。 [Bezbakh等人,物理。莱特牧师。 124(2020)022502]。因此,这两个双重成员出现在[Bezbakh等人,物理学的$^{7} $ h中。莱特牧师。 124(2020)022502]作为单个宽6.5 MEV峰。
The extremely neutron-rich system $^{7}$H was studied in the direct $^2$H($^8$He,$^3$He)$^7$H transfer reaction with a 26 AMeV secondary $^{8}$He beam [Bezbakh et al., Phys. Rev. Lett. 124 (2020) 022502]. The missing mass spectrum and center-of-mass (c.m.) angular distributions of $^{7}$H, as well as the momentum distribution of the $^{3}$H fragment in the $^{7}$H frame, were constructed. In addition to the investigation reported in Ref. [Bezbakh et al., Phys. Rev. Lett. 124 (2020) 022502], we carried out another experiment with the same beam but a modified setup, which was cross-checked by the study of the $^2$H($^{10}$Be,$^3$He$)^{9}$Li reaction. A solid experimental evidence is provided that two resonant states of $^{7}$H are located in its spectrum at 2.2(5) and 5.5(3) MeV relative to the $^3$H+4$n$ decay threshold. Also, there are indications that the resonant states at 7.5(3) and 11.0(3) MeV are present in the measured $^{7}$H spectrum. Based on the energy and angular distributions, obtained for the studied $^2$H($^8$He,$^3$He)$^7$H reaction, the weakly populated 2.2(5) MeV peak is ascribed to the $^7$H ground state. It is highly plausible that the firmly ascertained 5.5(3) MeV state is the $5/2^+$ member of the $^7$H excitation $5/2^+$-$3/2^+$ doublet, built on the $2^+$ configuration of valence neutrons. The supposed 7.5 MeV state can be another member of this doublet, which could not be resolved in Ref. [Bezbakh et al., Phys. Rev. Lett. 124 (2020) 022502]. Consequently, the two doublet members appeared in the spectrum of $^{7}$H in [Bezbakh et al., Phys. Rev. Lett. 124 (2020) 022502] as a single broad 6.5 MeV peak.