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Neutron halos in hypernuclei

机译:超核中的中子晕

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摘要

Properties of single-A and double-A hypernuclei for even-N Ca isotopes ranging from the proton dripline to the neutron dripline are studied using the relativistic continuum Hartree-Bogoliubov theory with a zero-range pairing interaction. Compared with ordinary nuclei, the addition of one two Λ-hyperons lowers the Fermi level. The predicted neutron dripline nuclei are, respectively, _Λ~(75)Ca and _(2Λ)~(76)Ca, as the additional attractive force provided by the Λ-N interaction shifts nuclei from outside to inside the dripline. Therefore, the last bound hypernuclei have two more neutrons than the corresponding ordinary nuclei. Based on the analysis of two-neutron separation energies, neutron single-particle energy levels, the contribution of continuum and nucleon density distribution, giant halo phenomena due to the pairing correlation, and the contribution from the continuum are suggested to exist in Ca hypernuclei similar to those that appear in ordinary Ca isotopes.
机译:使用具有零范围配对相互作用的相对论连续统Hartree-Bogoliubov理论研究偶氮N Ca同位素从质子滴线到中子滴线的单A和双A超核的性质。与普通原子核相比,添加两个Λ超子可降低费米能级。预测的中子滴线核分别为_ ^〜(75)Ca和_(2Λ)〜(76)Ca,因为Λ-N相互作用提供的额外吸引力将核从滴线的外部移动到内部。因此,最后一个结合的超核比相应的普通核具有更多的两个中子。在分析两个中子分离能,中子单粒子能级,连续谱和核子密度分布的贡献,配对相关性引起的巨大晕现象以及连续谱的贡献的基础上,对Ca超核存在相似性。那些出现在普通Ca同位素中的元素

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