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Simple Woods-Saxon type form for $\Omega \alpha $ and $\Xi \alpha$ interactions using Folding Model

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arxiv 1909.11130 v3 pith:6EZ6ZFG7 submitted 2019-09-24 nucl-th

classification nucl-th
keywords alphapotentialomegapotentialsforminteractionsmethodmodel
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abstract

We derive a simple Woods-Saxon type form for the potentials between $Y=\Xi, \Omega$ and $\alpha$ by using a single-folding potential method, based on a separable $Y$-nucleon potential. Accordingly, the potentials $\Xi+\alpha$ and $\Omega+\alpha$ are obtained using the ESC08c Nijmegens $\Xi N$ potential (in $^{3}S_{1}$ channel) and HAL QCD Collaboration $\Omega N$ interactions (in lattice QCD), respectively. In deriving the potential between $Y$ and $\alpha$, the same potential between $Y$ and $N$ is used. Binding energy, scattering length and effective range of $Y$ particle on the alpha particle are approximated by the resultant potentials. The depths of the potentials in $\Omega \alpha $ and $\Xi \alpha $ systems are obtained $-61$ and $-24.4$ MeV, respectively. In the case of $\Xi \alpha$ potential, a fairly good agreement is observed between the single-folding potential method and the phenomenological potential of Dover-Gal model. These potentials can be used in 3-,4- and 5-body cluster structures of $ \Omega$ and $\Xi$ hypernuclei.

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Cited by 2 Pith papers

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  1. From hyperon--nucleon interactions to deuteron--hyperon femtoscopy

    nucl-th 2026-07 conditional novelty 5.0 of 10

    Folded HAL-QCD potentials yield no dY bound states but a large dΛ scattering length and strong low-k correlation enhancement, with feed-down from Σ and Ξ clearly reshaping the observed dΛ signal.

  2. $\Omega$-deuteron Interaction in Folding Model

    nucl-th 2019-08 conditional novelty 5.0 of 10

    A single folding model with a lattice-QCD-derived Omega-nucleon potential gives Omega-deuteron binding energies of 7 to 19 MeV, confirming deep binding but with strong sensitivity to the deuteron wave function.

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