Neutron physics in the early 1930s

A. Gregorio
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引用次数: 3

Abstract

ABSTRACT: Dawning neutron physics was more complex than one might expect. The chance that the neutron comprised a proton and an electron was diffusely taken into account after the discovery of the neutron. Moreover, uncertainties persisted about the composition of beryllium radiation until it was realized that the latter comprised both neutrons and γγ-rays. The interaction of neutrons with matter and nuclei was soon investigated. Both a spatial symmetry, a symmetry of charge, and a symmetry in the nuclear reactions soon emerged. The relation of negative ββ-decay to the neutron abundance in nuclei was moreover reviewed. Positive ββ-radioactivity induced by αα-particles was eventually announced, having been foreseen some weeks before. Accelerated deutons and protons shortly afterwards revealed to be efficient in inducing radioactivity. The physics institute in Rome got ready to start research on neutrons, but apparently it only planned to go through αα-induced radioactivity, at first. If so, it is then plausible that some new results achieved by foreign laboratories eventually bent Fermi to neutrons. Fermi9s discovery of neutron-induced radioactivity is reviewed with regard to investigations then current, once more showing simplicity as a distinctive trait of Fermi9s way of doing physics.
20世纪30年代早期的中子物理学
摘要:早期的中子物理学比人们想象的要复杂得多。中子由质子和电子组成的可能性在中子发现后被广泛考虑。此外,铍辐射的组成一直存在不确定性,直到人们认识到铍辐射既有中子又有γγ射线。中子与物质和原子核的相互作用很快得到了研究。空间对称、电荷对称和核反应中的对称很快就出现了。此外,还评述了β-负衰变与原子核中中子丰度的关系。αα-粒子引起的ββ-正放射性最终被宣布,这在几周前就已经预见到了。不久之后,加速的氘核和质子被证明在诱导放射性方面是有效的。罗马的物理研究所准备开始对中子的研究,但起初它显然只计划通过αα-诱导的放射性。如果是这样,那么国外实验室取得的一些新结果最终使费米转向中子是合理的。费米9的中子诱导放射性的发现回顾了当时的研究,再一次显示了简单作为费米9做物理的方式的一个独特的特点。
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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