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229Th中7.8 eV同质异能素伽马衰变的跃迁概率降低

Reduced Transition Probabilities for the Gamma Decay of the 7.8 eV Isomer in ^{229}Th.

作者信息

Minkov Nikolay, Pálffy Adriana

机构信息

Institute of Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences, Tzarigrad Road 72, BG-1784 Sofia, Bulgaria.

Max-Planck-Institut für Kernphysik, Saupfercheckweg 1, D-69117 Heidelberg, Germany.

出版信息

Phys Rev Lett. 2017 May 26;118(21):212501. doi: 10.1103/PhysRevLett.118.212501. Epub 2017 May 23.

Abstract

The reduced magnetic dipole and electric quadrupole transition probabilities for the radiative decay of the ^{229}Th 7.8  eV isomer to the ground state are predicted within a detailed nuclear-structure model approach. We show that the presence and decay of this isomer can only be accounted for by the Coriolis mixing emerging from a remarkably fine interplay between the coherent quadrupole-octupole motion of the nuclear core and the single-nucleon motion within a reflection-asymmetric deformed potential. We find that the magnetic dipole transition probability which determines the radiative lifetime of the isomer is considerably smaller than presently estimated. The so-far disregarded electric quadrupole component may have non-negligible contributions to the internal conversion channel. These findings support new directions in the experimental search of the ^{229}Th transition frequency for the development of a future nuclear frequency standard.

摘要

在一个详细的核结构模型方法中,预测了钍-229 7.8电子伏特异构体向基态辐射衰变时降低的磁偶极和电四极跃迁概率。我们表明,这种异构体的存在和衰变只能通过核芯的相干四极-八极运动与反射不对称变形势内的单核子运动之间显著精细的相互作用所产生的科里奥利混合来解释。我们发现,决定异构体辐射寿命的磁偶极跃迁概率比目前估计的要小得多。迄今为止被忽视的电四极分量可能对内部转换通道有不可忽略的贡献。这些发现为未来核频率标准发展中钍-229跃迁频率的实验搜索提供了新方向。

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