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An experimental perspective on triggered gamma emission from nuclear isomers

机译:核异构体触发伽马发射的实验观点

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The study of triggered depopulation of nuclear isomers, with accompanying gamma emission, is a rapidly-changing field that is only now attaining some degree of maturity. Because isomer decays via electromagnetic transitions are strongly inhibited, the interaction of these levels with externally-produced photons provides an important probe of nuclear structure. Also, since some isomers may store large amounts of energy for long times, a number of applications have been proposed, including the creation of a gamma-ray laser. Early experiments conclusively demonstrated triggering of the 10{sup}15-year isomer of 180{sup left}Ta, but even a partial correlation of the effect with known levels could only be obtained recently. Investigations of triggering for the 31-year isomer of 178{sup left}(Hf) were initially guided just by sys-tematics and experiments are characterized by considerable controversy. Against this background, the field of triggered gamma emission is entering a new phase in which improved level data allow targeting of specific potentially-useful transitions. This paper summarizes the currenjt state-of-the-art and discusses the changing nature of the field.
机译:伴随着伽马发射而引起的核异构体引发种群减少的研究是一个瞬息万变的领域,直到现在它才获得一定程度的成熟。由于强烈抑制了异构体通过电磁跃迁的衰变,因此这些能级与外部产生的光子的相互作用提供了重要的核结构探针。另外,由于某些异构体可能长时间存储大量能量,因此提出了许多应用,包括创建伽马射线激光器。早期实验最终证明触发了180 {sup left} Ta的10 {sup} 15年异构体,但该效应与已知水平的部分相关性只能在最近获得。 178 {sup left}(Hf)的31年异构体引发的研究最初仅是通过系统学来指导的,而实验的特点是存在很大争议。在此背景下,触发伽马发射的领域进入了一个新阶段,在该阶段中,经过改进的液位数据可以确定特定的潜在有用过渡。本文总结了当前的最新技术,并讨论了该领域不断变化的性质。

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