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Discovery of ~(40)Mg and ~(42)Al suggests neutron drip-line slant towards heavier isotopes

机译:〜(40)Mg和〜(42)Al的发现表明中子滴线向重同位素倾斜

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A fundamental question in nuclear physics is what combinations of neutrons and protons can make up a nucleus. Many hundreds of exotic neutron-rich isotopes have never been observed; the limit of how many neutrons a given number of protons can bind is unknown for all but the lightest elements, owing to the delicate interplay between single particle and collective quantum effects in the nucleus. This limit, known as the neutron drip line, provides a benchmark for models of the atomic nucleus. Here we report a significant advance in the determination of this limit: the discovery of two new neutron-rich isotopes—~(40)Mg and ~(42)Al—that are predicted to be drip-line nuclei. In the past, several attempts to observe ~40Mg were unsuccessful; moreover, the observation of ~42Al provides an experimental indication that the neutron drip line may be located further towards heavier isotopes in this mass region than is currently believed. In stable nuclei, attractive pairing forces enhance the stability of isotopes with even numbers of protons and neutrons. In contrast, the present work shows that nuclei at the drip line gain stability from an unpaired proton, which narrows the shell gaps and provides the opportunity to bind many more neutrons.
机译:核物理学中的一个基本问题是,中子和质子的组合可以构成一个核。从未观察到数百种奇异的富含中子的同位素。除了最轻的元素外,给定数量的质子可以结合多少个中子的极限是未知的,这是由于原子中单个粒子与集体量子效应之间的微妙相互作用。这个极限被称为中子滴线,为原子核模型提供了基准。在这里,我们报告了在确定该限值方面的重要进展:发现了两个新的富含中子的同位素-〜(40)Mg和〜(42)Al-,它们被认为是滴线核。过去,几次观察到〜40Mg的尝试均未成功。此外,〜42Al的观察提供了实验指示,表明中子滴线可能比当前认为的更靠近该质量区中较重的同位素。在稳定的原子核中,有吸引力的配对力增强了偶数质子和中子的同位素的稳定性。相反,目前的工作表明,滴线处的原子核从未配对的质子中获得稳定性,这使壳间隙变窄,并提供了结合更多中子的机会。

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