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Novel Approach to ~(93m)Mo Isomer Depletion: Nuclear Excitation by Electron Capture in Resonant Transfer Process

机译:〜(93M)莫异构耗尽的新方法:谐振转移过程中电子捕获的核激发

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摘要

A novel approach for isomer depletion in ion-atom collisions is proposed and considered theoretically. Analyses are performed for the depletion of the Mo-93m isomer for which an unexpectedly large probability was measured in the beam-based experiment of Chiara et al. [Nature (London) 554, 216 (2018)]. The subsequent attempt at a theoretical description based on state-of-the-art atomic theory did not reproduce the experimental result [Wu et al., Phys. Rev. Lett. 122, 212501 (2019)] and showed a dramatic disagreement with the experiment (by many orders of magnitude). This conflict calls for further research on the nature of isomer depletion mechanisms occurring in atomic processes. Here, we propose to consider the Mo-93m isomer depletion as the nuclear excitation by electron capture in resonant transfer process taking into account the momentum distribution of the target electrons. Although our results only slightly shift the upper theoretical limit for the total Mo-93m isomer depletion probability toward the experimental value, they show the importance of considering the Compton profile in the theoretical description, in particular for the L shell, for which the depletion probability increases by many orders of magnitude.
机译:提出并理论上地考虑了离子原子碰撞中的异构体耗尽的新方法。对Mo-93M异构体的耗竭进行分析,在Chiara等人的基于梁的实验中测量了意外的大概率。 [性质(伦敦)554,216(2018)]。随后在基于最先进的原子理论的理论描述的尝试没有再现实验结果[Wu等,phy。 rev. lett。 122,212501(2019)]并表现出对实验的显着分歧(通过许多数量级)。这种冲突要求进一步研究原子过程中发生异构体耗尽机制的性质。在这里,我们建议考虑Mo-93m异构体耗尽作为谐振转移过程中的电子捕获作为核激发,考虑到目标电子的动量分布。虽然我们的结果仅略微向实验值略微移动总MO-93M异构体耗尽概率的较高理论极限,但它们展示了考虑康普顿轮廓在理论描述中的重要性,特别是对于L壳,耗尽概率增加了许多数量级。

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  • 来源
    《Physical review letters 》 |2021年第4期| 042501.1-042501.6| 共6页
  • 作者单位

    Natl Ctr Nucl Res PL-05400 Otwock Poland;

    Nicolaus Copernicus Univ Torun Fac Chem PL-87100 Torun Poland;

    Nicolaus Copernicus Univ Torun Fac Chem PL-87100 Torun Poland;

    Nicolaus Copernicus Univ Torun Fac Chem PL-87100 Torun Poland;

    DEVCOM Army Res Lab Adelphi MD 20783 USA;

    DEVCOM Army Res Lab Adelphi MD 20783 USA;

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