当前位置: X-MOL 学术Nucl. Data Sheets › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Nuclear Data Sheets for A=64
Nuclear Data Sheets ( IF 3.7 ) Pub Date : 2021-12-06 , DOI: 10.1016/j.nds.2021.11.002
Balraj Singh 1 , Jun Chen 2
Affiliation  

The evaluated experimental data are presented and evaluated for 13 known nuclides of mass 64 (Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Ga, Ge, As, Se). For each nuclide, the best values combining all available data are recommended for spectroscopic properties. No excited states have been identified in 64Ti, 64As, and 64Se. Only one excited state in 64V as an isomer, and three in 64Cr have been identified. Data for excited states in 64Mn, 64Fe, and 64Co remain limited. 64Ni, 64Cu, and 64Zn are the most studied nuclides through various reactions and decays, followed by 64Ga and 64Ge. In the opinion of the evaluators, there are several incomplete or discrepant aspects of the high-spin portion of the level scheme for 64Zn above ≈5 MeV excitation which need to be resolved in further experiments using large γ-detector arrays. The decay schemes of 64Ti β, 64As ε and 64Se ε are unknown, while very little information is available for 64V β and 64Cr β. The decay schemes of 64Mn β, 64Fe β, 64Co β and 64Ge ε are somewhat better known, but still considered incomplete by evaluators. The decay scheme of 64Ga ε decay is known in detail, however there is the possibility of additional levels populated above 4713 keV, as the Q(ε) value is 7171 keV. The β, β+ and ε decay modes of 64Cu are well known, as this radionuclide is of great importance in applications, for example, as a dosimeter for neutron flux determination in nuclear reactors, and as a radiopharmaceutical for positron emission tomography (PET). This work supersedes earlier full evaluations of A=64 by 2007Si04, 1996Si12, 1991Si03, 1979Ha35 and 1974Au04.



中文翻译:

A=64 的核数据表

提供并评估了 13 种已知质量为 64 的核素(Ti、V、Cr、Mn、Fe、Co、Ni、Cu、Zn、Ga、Ge、As、Se)的评估实验数据。对于每种核素,推荐结合所有可用数据的最佳值用于光谱特性。在64 Ti、64 As 和64 Se 中没有发现激发态。64 V 中只有一种激发态作为异构体,64 Cr 中只有三种激发态已被鉴定。64 Mn、64 Fe 和64 Co 中激发态的数据仍然有限。64镍、64铜和64Zn 是通过各种反应和衰变研究最多的核素,其次是64 Ga 和64 Ge。在评估者看来,64 Zn 高于 ≈5 MeV 激发的能级方案的高自旋部分有几个不完整或不一致的方面,需要在使用大型γ探测器阵列的进一步实验中解决。64 Ti β -64 As ε64 Se ε的衰变方案未知,而64 V β -64 Cr β 的信息很少- . 64 Mn β -64 Fe β -64 Co β -64 Ge ε的衰变方案在某种程度上更为人所知,但仍被评估者认为是不完整的。详细了解64 Ga ε衰变的衰变方案,但是有可能在 4713 keV 以上填充额外的能级,因为 Q( ε ) 值为 7171 keV。64β -β +ε衰减模式铜是众所周知的,因为这种放射性核素在应用中非常重要,例如,作为用于核反应堆中子通量测定的剂量计,以及作为用于正电子发射断层扫描 (PET) 的放射性药物。这项工作取代了 2007Si04、1996Si12、1991Si03、1979Ha35 和 1974Au04 之前对 A=64 的全面评估。

更新日期:2021-12-06
down
wechat
bug