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March 18, 2026Particles0 citationsOpen Access

Halos and Multineutron Correlations in Light Neutron-Rich Nuclei

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ZLZheyang LinZYZaihong Yang

Key Points

  • The aim is to summarize recent experimental findings on light neutron-rich nuclei and their correlations.
  • Review of experimental progress from the Radioactive Isotope Beam Factory (RIBF)
  • Examination of quasi-free scattering reactions in inverse kinematics
  • Analysis of single-particle composition and dineutron correlations in various nuclei
  • Discussion of multineutron correlations and cluster states based on recent breakthroughs
  • Revelation of minimal s-wave component in the weak-halo nucleus 17B
  • Mapping of surface-localized dineutron correlations in nuclei like 11Li and 14Be
  • Observation of a candidate 4n resonance and characterization of decay in 16Be
  • Evidence for an α+2n+2n cluster structure in the 8He state

Abstract

This review summarizes recent experimental progress in the structure and correlations of light neutron-rich nuclei. We first highlight achievements based on quasi-free scattering reactions in inverse kinematics at the Radioactive Isotope Beam Factory (RIBF), including investigations of the single-particle composition of halo systems—for example, revealing the minimal s-wave component in the “weak-halo” nucleus 17B—and the mapping of universal, surface-localized dineutron correlations in Borromean nuclei such as 11Li, 14Be and 17B. We then discuss recent advances in the study of multineutron correlations and cluster states, addressing both experimental challenges and major breakthroughs. These include the observation of a candidate 4n resonance, the absence of a resonant state in the 3n system, the characterization of direct two-neutron decay in 16Be, and evidence for a condensate-like α+2n+2n cluster structure in the 8He(02+) state. Finally, we discuss prospects for extending such investigations to heavier halo candidates and more complex multineutron systems, and outline the development of next-generation neutron detector arrays that will drive future progress in this field.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/69ba44654e9516ffd37a6155https://doi.org/10.3390/particles9010027
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