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I Vidaña

Publications and source records attributed to I Vidaña.

2 recordsLinked to original sources

Bridging correlation and spectroscopy measurements to access the hadron interaction behind molecular states: the case of the $Ξ$(1620) and $Ξ$(1690) in the $K^- Λ$ system

We study the compatibility between the $K^-Λ$ correlation function, recently measured by the ALICE collaboration, and the LHCb $K^-Λ$ invariant mass distribution obtained in the $Ξ^-_b \to J/ψΛK^-$ decay. The $K^-Λ$ invariant mass distribution associated with the $Ξ^-_b$ decay has been calculated within the framework of Unitary Effective Field Theories using two models, one of them constrained by the $K^-Λ$ correlation function. We consider two degenerate pentaquark $P_{cs}$ states in the $J/ψΛ$ scattering amplitude which allows us to investigate their impact on both the $K^-Λ$ and $J/ψΛ$ mass distributions assuming different spin-parity quantum numbers and multiplicity. Without any fitting procedure, the $K^-Λ$ model is able to better reproduce the experimental $K^-Λ$ mass spectrum in the energy region above $1680$ MeV as compared to previous unitarized scattering amplitudes constrained to a large amount of experimental data in the neutral $S=-1$ meson-baryon sector. We observe a tension between our model and the LHCb $K^-Λ$ distribution in the region close to the threshold, largely dominated by the presence of the still poorly known $Ξ$(1620) state. We discuss in detail the different production mechanisms probed via femtoscopy and spectroscopy that could provide valid explanations for such disagreement, indicating the necessity to employ future correlation data in other $S=-2$ channels such as $πΞ$ and $\bar{K}Σ$.

hep-ph

Excitation of baryonic resonances in stable medium-mass nuclei of Sn

Isobaric charge-exchange reactions induced by beams of 112Sn have been investigated at the GSI facilities using the fragment separator FRS. The high-resolving power of this spectrometer makes it possible to obtain the isobaric charge-exchange cross sections with an accuracy of 3% and to separate quasi-elastic and inelastic contributions in the missing-energy spectra, in which the inelastic component is associated to the in-medium excitation of baryonic resonances such as the $Δ$ resonance. We report on the results obtained for the (p,n) and (n,p) channels excited by using different targets that cover a large range in neutron excess.

nucl-ex