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

Muzalevskii, I. A., Bezbakh, A. A., Nikolskii, E. Yu., Chudoba, V., Krupko, S. A., Belogurov, S. G., Biare, D., Fomichev, A. S., Gazeeva, E. M., Gorshkov, A. V., Grigorenko, L. V., Kaminski, G., Kiselev, O., Kostyleva, D. A., Kozlov, M. Yu., Mauyey, B., Mukha, I., Parfenova, Yu. L., Piatek, W., Quynh, A. M., Schetinin, V. N., Serikov, A., Sidorchuk, S. I., Sharov, P. G., Shulgina, N. B., Slepnev, R. S., Stepantsov, S. V., Swiercz, A., Szymkiewicz, P., Ter-Akopian, G. M., Wolski, R., Zalewski, B., Zhukov, M. V.

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.

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