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Uses of alpha particles, especially in nuclear reaction studies and medical radionuclide production

机译:α颗粒的用途,尤其是在核反应研究和医用放射性核素生产中

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摘要

Alpha particles exhibit three important characteristics: scattering, ionisation and activation. This article briefly discusses those properties and outlines their major applications. Among others, α-particles are used in elemental analysis, investigation and improvement of materials properties, nuclear reaction studies and medical radionuclide production. The latter two topics, dealing with activation of target materials, are treated in some detail in this paper. Measurements of excitation functions of α-particle induced reactions shed some light on their reaction mechanisms, and studies of isomeric cross sections reveal the probability of population of high-spin nuclear levels. Regarding medical radionuclides, an overview is presented of the isotopes commonly produced using α-particle beams. Consideration is also given to some routes which could be potentially useful for production of a few other radionuclides. The significance of α-particle induced reactions to produce a few high-spin isomeric states, decaying by emission of low-energy conversion or Auger electrons, which are of interest in localized internal radiotherapy, is outlined. The α-particle beam, thus broadens the scope of nuclear chemistry research related to development of non-standard positron emitters and therapeutic radionuclides.
机译:α粒子具有三个重要特征:散射,电离和活化。本文简要讨论了这些属性并概述了它们的主要应用。其中,α颗粒用于元素分析,材料性能的研究和改进,核反应研究以及医用放射性核素的生产。本文将对后两个主题(涉及目标材料的激活)进行详细处理。对α-粒子诱导的反应的激发函数的测量揭示了它们的反应机理,对同分异构体截面的研究揭示了高自旋核能级数的可能性。关于医用放射性核素,概述了通常使用α粒子束产生的同位素。还考虑了一些可能对生产其他一些放射性核素可能有用的路线。概述了α粒子诱导的反应产生一些高自旋异构体状态的重要性,这些反应由于低能转换或俄歇电子的发射而衰减,这在局部内部放射治疗中很有意义。因此,α粒子束扩大了与开发非标准正电子发射体和治疗性放射性核素有关的核化学研究范围。

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