Probing Cluster Structures and Isospin Symmetry in Light Nuclei via Symmetric

Measurements of the symmetric 10B + 10B reaction at beam energies of 50 and 72 MeV were performed at INFN - LNS. Owing to the large intrinsic spin of both projectile and target (Jπ = 3+), this reaction favors the population of high-spin states and provides efficient access to mirror nuclear systems such as 10Be - 10C, 11B - 11C, and 9Be - 9B. High-resolution charged-particle co-incidence data allowed the reconstruction of weakly populated and previously unobserved states, offering new insight into clustering phenomena and mirror symmetry in light nuclei. Mirror spectra exhibit systematic Coulomb-shift behavior, distinguishing compact shell-model states from near-threshold cluster configurations. Apart from mirror nuclei, in 12C, a level at Ex = 24.4 MeV is strongly populated in triple-α coincidences, while in 13C there is a pronounced structure at Ex = 19.0 MeV, observed in α+9Be coincidences. These measurements form part of a broader program of symmetric light-ion reactions aimed at exploring clustering and shell mixing in light nuclei.

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Publication Details

Journal
Springer Link (Chiba Institute of Technology)
Published
2026-09-15
DOI
https://doi.org/10.1051/epjconf/202638601002/pdf
Primary Topic
Nuclear physics research studies
Type
article
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article

Probing Cluster Structures and Isospin Symmetry in Light Nuclei via Symmetric

Matko Milin, N. Soić, P. Figuera, A. Di Pietro et al.
Springer Link (Chiba Institute of Technology)
Nuclear physics research studies
article

Probing Cluster Structures and Isospin Symmetry in Light Nuclei via Symmetric

Matko Milin, N. Soić, P. Figuera, A. Di Pietro, M. G. Pellegriti, A. Musumarra, Deša Jelavić Malenica, S. Szilner, D. Torresi, M. Uroić, V. Scuderi
article en

Abstract

Measurements of the symmetric 10B + 10B reaction at beam energies of 50 and 72 MeV were performed at INFN - LNS. Owing to the large intrinsic spin of both projectile and target (Jπ = 3+), this reaction favors the population of high-spin states and provides efficient access to mirror nuclear systems such as 10Be - 10C, 11B - 11C, and 9Be - 9B. High-resolution charged-particle co-incidence data allowed the reconstruction of weakly populated and previously unobserved states, offering new insight into clustering phenomena and mirror symmetry in light nuclei. Mirror spectra exhibit systematic Coulomb-shift behavior, distinguishing compact shell-model states from near-threshold cluster configurations. Apart from mirror nuclei, in 12C, a level at Ex = 24.4 MeV is strongly populated in triple-α coincidences, while in 13C there is a pronounced structure at Ex = 19.0 MeV, observed in α+9Be coincidences. These measurements form part of a broader program of symmetric light-ion reactions aimed at exploring clustering and shell mixing in light nuclei.

Springer Link (Chiba Institute of Technology)
Openalex Percentile: Top 12%
Nuclear physics research studies
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Probing Cluster Structures and Isospin Symmetry in Light Nuclei via Symmetric — Matko Milin, N. Soić, et al. · Springer Link (Chiba Institute of Technology) (2026) | TGRS Research Map | TGRS