On the internal bremsstrahlung accompanyingβ-decay and its potential relevance in the application of radioactive sources.

Antonio Italiano, Ernesto Amato, Daniele Pistone, Lucrezia Auditore
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Abstract

An in-depth analysis of the decay process forβ-emitting radionuclides highlights, for some of them, the existence of high-order effects usually not taken into account in literature as considered negligible in terms of energy and yield, and referred to as Internal Bremsstrahlung (IB). This set ofβ-radionuclides presents, besides theirβspectrum, a continuousγemission due to the Coulomb field braking action on the emitted electron following the decaying nucleus. In this work, we review the theoretical and experimental studies on the IB process focusing on its actual importance for the pureβemitters. It emerges that there is no satisfactory model able to reproduce the experimental IB distribution for most of the investigated beta emitters and the several measurements are sometimes at odds with each other. Moreover, as recently demonstrated, the IB process can give a relevant contribution to the physics of beta emitters thus requiring its inclusion in the physics of the beta decay. A discussion on the importance of considering IB process in both applicative fields such as nuclear medicine, industrial applications, and research or calibration laboratories, and in other relevant fields of particle physics or astrophysics, such as the research on dark matter or neutrino mass, is presented.

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关于伴随β衰变的内部轫致辐射及其在放射源应用中的潜在意义。
通过对β放射性核素衰变过程的深入分析,可以发现其中一些放射性核素存在高阶效应,这些效应在文献中通常不被考虑,因为它们被认为在能量和产量方面可以忽略不计,并被称为内部轫致辐射(IB)。这组 β 放射性核素除了其 β 光谱外,由于衰变核对发射电子的库仑场制动作用,还呈现出连续的 γ 发射。研究表明,对于大多数已研究过的β发射体,并没有一个令人满意的模型能够再现实验中的 IB 分布,而且一些测量结果有时相互矛盾。此外,正如最近证明的那样,IB 过程可以对 β 辐射体的物理学做出相关贡献,因此需要将其纳入 β 衰变的物理学中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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