arXiv · 2104.02216
$α$-cluster structures above double shell closures via double-folding potentials from chiral effective field theory
Abstract
$α$-cluster structures above double shell closures are among the cornerstones for nuclear $α$-cluster physics. Semi-microscopic cluster models (SMCMs) are important theoretical models to study their properties. A crucial ingredient of SMCM is the effective potential between the alpha cluster and the doubly magic nucleus. We derive new double-folding potentials between $α$ clusters and doubly magic nuclei from soft local chiral nucleon-nucleon potentials given by chiral effective field theory ($χ$EFT) at the next-to-next-to-leading order. The $α$-cluster structures in ${}^{8}\text{Be}$, ${}^{20}\text{Ne}$, ${}^{44,52}\text{Ti}$, and ${}^{212}\text{Po}$ are explored to validate these new double-folding potentials. The $α$ decay of ${}^{104}\text{Te}$ is also studied in the light of recent experimental results. Our study shows that double-folding potentials from $χ$EFT are the new reliable effective potentials for the SMCM approach to $α$-cluster structures above double shell closures, with both conceptual and phenomenological merits.
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Dong Bai, Zhongzhou Ren. 2021-04-06. $α$-cluster structures above double shell closures via double-folding potentials from chiral effective field theory. https://doi.org/10.1103/physrevc.103.044316
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