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From $\bar{K}N$ Interactions to $\bar{K}$-Nuclear Quasi-Bound States

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arxiv 2001.08621 v1 pith:YHW5TAH4 submitted 2020-01-23 nucl-th

classification nucl-th
keywords nuclearstatesquasi-boundabsorptioninteractionsmulti-nucleonadoptedamplitudes
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abstract

We review the current status of our study of $K^-$-nuclear interactions and $K^-$-nuclear quasi-bound states. The adopted $K^-$-nuclear optical potential consists of two parts -- the single-nucleon one constructed microscopically from chirally motivated $\bar{K}N$ amplitudes, and a phenomenological multi-nucleon one constrained in fits to kaonic atoms data. The inclusion of multi-nucleon absorption in our calculations of $K^{-}$ quasi-bound states in many-body systems leads to huge widths, considerably exceeding the binding energies. If this feature is confirmed the observation of such states is unlikely. Finally, a development of a new microscopical model for in-medium $K^-NN$ absorption is discussed as well.

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  1. Femtoscopic study of the $S=-1$ meson-baryon interaction: $K^-p$, $\pi^-\Lambda$ and $K^+\Xi^-$ correlations

    hep-ph 2024-12 conditional novelty 6.0 of 10

    Chiral unitary models reproduce the measured kaon-proton correlation and give first predictions for pion-Lambda and kaon-Xi-minus correlations using new production-weight methods.

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