arXiv · 2206.14514
Quasi-bound state in the $\bar{K}NNN$ system
Abstract
The paper is devoted to the $\bar{K}NNN$ system, which is an exotic system consisting of an antikaon and three nucleons. Dynamically exact four-body Faddeev-type equations were solved and characteristics of the quasi-bound state in the system were evaluated. Three antikaon-nucleon and three nucleon-nucleon potentials were used, so the dependence of the four-body pole positions on the two-body interaction models was studied. The resulting binding energies $B^{\rm Chiral}_{K^-ppn} \sim 30.5 - 34.5$ MeV obtained with chirally motivated and $B^{\rm SIDD}_{K^-ppn} \sim 46.4 - 52.0$ MeV obtained with phenomenological antikaon-nucleon potentials are close to those obtained for the $K^- pp$ system with the same $\bar{K}N$ and $NN$ potentials, while the four-body widths $\Gamma_{K^- ppn} \sim 38.2 - 50.9$ MeV are smaller.
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N. V. Shevchenko. 2022-06-29. Quasi-bound state in the $\bar{K}NNN$ system. https://doi.org/10.1103/physrevc.106.064006
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