Femtoscopic study of the $S=-1$ meson-baryon interaction: $K^-p$, $π^-Λ$ and $K^+Ξ^-$ correlations
Abstract: We study the femtoscopic correlation functions of meson-baryon pairs in the strangeness $S=-1$ sector, employing unitarized s-wave scattering amplitudes derived from the chiral Lagrangian up to next-to-leading order. For the first time, we deliver predictions on the $\pi-\Lambda$ and $K+\Xi-$ correlation functions which are feasible to be measured at the Large Hadron Collider. We also demonstrate that the employed model is perfectly capable of reproducing the $K-p$ correlation function data measured by the same collaboration, without the need to modify the coupling strength to the $\bar{K}0n$ channel, as has been recently suggested. In all cases, the effects of the source size on the correlation are tested. In addition, we present detailed analysis of the different coupled-channel contributions, together with the quantification of the relative relevance of the different terms in the interaction. These calculations require the knowledge of the so-called production weights, for which we present two novel methods to compute them.
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