论文标题

$^{253} $ rf的裂变属性和中子缺陷RF同位素的稳定性

Fission properties of $^{253}$Rf and the stability of neutron-deficient Rf isotopes

论文作者

Lopez-Martens, A., Hauschild, K., Svirikhin, A. I., Asfari, Z., Chelnokov, M. L., Chepigin, V. I., Dorvaux, O., Forge, M., Gall, B., Isaev, A. V., Izosimov, I. N., Kessaci, K., Kuznetsova, A. A., Malyshev, O. N., Mukhin, R. S, Popeko, A. G., Popov, Yu. A., Sailaubekov, B., Sokol, E. A., Tezekbayeva, M. S., Yeremin, A. V.

论文摘要

对最近的实验数据的分析[J. Khuyagbaatar等人,物理学。 Rev. C 104,L031303(2021)]已经建立了$^{253} $ rf中存在两个裂变状态:基态和低洼的异构体状态,最有可能涉及与较轻的iSotone $^{251} $ no相同的中子单晶构型。用$^{253} $ rf测得的裂变半衰期的比率用于预测$^{251} $ no的1/2 $^{+} $ isomeric状态的裂变属性,并得出结论,以结论稳定性,以抵抗更轻的RF系统的裂变。本文再次将重点放在$^{253} $ rf的裂变特性及其对其他中性缺陷同位素的稳定性的影响,使用了从俄罗斯DUBNA核反应实验室进行的两个实验中收集的新的和改进的数据。在$^{253} $ rf的情况下,测量了两种半衰期为52.8(4.4)$ 〜μ $ S和9.9(1.2)MS的裂变活动,证实了J. Kkuyagbaatar等人的结果。通过检测到52.8 $ 〜μ $ s状态的电磁衰减,也观察到了第三个状态,在更高的激发能量下也观察到了。与J. Khuyagbaatar等人相比,该观察结果导致了裂变状态的相反量子构型分配,即,高旋转状态具有最短的裂变半寿命。在异酮$^{251} $ no中,通过未观察到低自旋异构体的任何实质性裂变分支,低自旋转状态之间的裂变障碍之比得到了证实。

An analysis of recent experimental data [J. Khuyagbaatar et al., Phys. Rev. C 104, L031303 (2021)] has established the existence of two fissioning states in $^{253}$Rf: the ground state and a low-lying isomeric state, most likely involving the same neutron single-particle configurations as in the lighter isotone $^{251}$No. The ratio of fission half-lives measured in $^{253}$Rf was used to predict the fission properties of the 1/2$^{+}$ isomeric state in $^{251}$No and draw conclusions as to the stability against fission of even lighter Rf systems. This paper focusses again on the fission properties of $^{253}$Rf and their impact on the stability of other neutron deficient isotopes, using new and improved data collected from two experiments performed at the Flerov Laboratory of Nuclear Reactions in Dubna, Russia. Two fission activities with half-lives of 52.8(4.4)$~μ$s and 9.9(1.2) ms were measured in the case of $^{253}$Rf, confirming the results of J. Kkuyagbaatar et al. A third state, at much higher excitation energy, was also observed through the detection of its electromagnetic decay to the 52.8$~μ$s state. This observation leads to the opposite quantum-configuration assignments for the fissioning states as compared to the ones established by J. Khuyagbaatar et al., namely that the higher-spin state has the shortest fission half-life. This inversion of the ratio of fission hindrances between the low and high-spin states is corroborated in the isotone $^{251}$No by the non observation of any substantial fission branch from the low-spin isomer.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源