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'Magic' nucleus ~(42)Si

机译:魔核〜(42)Si

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Nuclear shell structures—the distribution of the quantum states of individual protons and neutrons—provide one of our most important guides for understanding the stability of atomic nuclei. Nuclei with 'magic numbers' of protons and/or neutrons (corresponding to closed shells of strongly bound nucleons) are particularly stable. Whether the major shell closures and magic numbers change in very neutron-rich nuclei (potentially causing shape deformations) is a fundamental, and at present open, question. A unique opportunity to study these shell effects is offered by the ~(42)Si nucleus, which has 28 neutrons—a magic number in stable nuclei—and 14 protons. This nucleus has a 12-neutron excess over the heaviest stable silicon nuclide, and has only one neutron fewer than the heaviest silicon nuclide observed so far. Here we report measurements of ~(42)Si and two neighbouring nuclei using a technique involving one- and two-nucleon knockout from beams of exotic nuclei. We present strong evidence for a well-developed proton subshell closure at Z = 14 (14 protons), the near degeneracy of two different (s_(1/2) and d_(3/2)) proton orbits in the vicinity of ~(42)Si, and a nearly spherical shape for ~(42)Si.
机译:核壳结构(单个质子和中子的量子态分布)是我们了解原子核稳定性的最重要指南之一。具有质子和/或中子“魔术数”的核(对应于强结合核子的封闭壳)特别稳定。主要的壳体闭合和魔术数是否会在非常富中子的原子核中发生变化(可能导致形状变形),这是一个基本的问题,目前尚待解决。 〜(42)Si核提供了研究这些壳效应的独特机会,该核具有28个中子(稳定核中的幻数)和14个质子。这个核比最重的稳定核硅多12个中子,比迄今为止观察到的最重核少一个。在这里,我们报告了〜(42)Si和两个相邻原子核的测量,所使用的技术涉及从奇异原子核束中去除一个和两个核子。我们为Z = 14(14质子)上发达的质子子壳闭合,〜(附近)的两个不同的(s_(1/2)和d_(3/2))质子轨道的近简简性提供了强有力的证据。 42)Si,而〜(42)Si几乎为球形。

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