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Analysis of clustering fragments of $^7$Li and $^7$Be in the microscopic cluster model (2501.05216v1)

Published 9 Jan 2025 in nucl-th

Abstract: The nuclear structures of $7$Li($\alpha+n+n+p$) and $7$Be($\alpha+p+p+n$) are studied within the microscopic cluster model, in which the clustering fragments e.g., triton, $3$He, and even the single nucleons around the core are studied in the $7$Li and $7$Be systems. We obtain the energy spectra and wave functions of $7$Li and $7$Be, and the calculated energy spectra of the ground states and some of the excited states are consistent with experimental data. To investigate the cluster-formation probabilities, we calculate the reduced-width amplitudes of various binary partitions. The results show that the $\alpha+t(3\mathrm{He})$ cluster structure is dominant in the low-lying states of $7$Li($7$Be), including the ground state and the three lowest excited states. In some higher states around the single-particle thresholds, the components of $\mathrm{core}+N$ structures, namely $6\mathrm{Li}+n$ and $6\mathrm{He}+p$ in $7$Li and $6\mathrm{Li}+p$ in $7$Be, are significantly enhanced.

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