The “Beta-Delayed Neutrons at RIKEN” Project (BRIKEN): Conquering the Most Exotic Beta-Delayed Neutron-Emitters

The “Beta-Delayed Neutrons at RIKEN” Project (BRIKEN): Conquering the Most Exotic Beta-Delayed Neutron-Emitters
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RIKEN 的“β 延迟中子”项目 (BRIKEN):征服最奇特的 β 延迟中子发射体

DOI:
10.1080/10619127.2018.1427937
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发表时间:
2018
影响因子:
--
通讯作者:
Tarifeño-Saldivia, Ariel
Tarifeño-Saldivia, Ariel
中科院分区:
--
文献类型:
--
作者:
Dillmann, Iris;Tarifeño-Saldivia, Ariel

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现代放射性同位素设施的主要任务之一是探索核素图中富含中子一侧的未知同位素的性质。然而,变得更富中子也意味着中子分离能量降低,直到它在Sn= 0 MeV时到达滴线。如果中子分离能低于β衰变能窗(Qβ值),则可能发生新的衰变机制:β衰变后的中子发射。这些“β缓发中子”(βn)发射体在核结构、核天体物理学和核反应堆应用中起着至关重要的作用。
Among the main missions of modern radioactive isotope facilities is the exploration of properties of yet unknown isotopes on the neutron-rich side of the chart of nuclides. However, going more neutron-rich also means that the neutron separation energy decreases until it reaches the dripline at Sn= 0 MeV. If the neutron separation energy gets lower than the β-decay energy window (Qβvalue), a new decay mechanism can occur: the emission of neutrons after β-decay. These “β-delayed neutron” (βn) emitters play a crucial role in nuclear structure, nuclear astrophysics, and for nuclear reactor applications.
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