This work presents new constraints on the existence and the binding energy of a possible Λ–Λ bound state, the H-dibaryon, derived from Λ–Λ femtoscopic measurements by the ALICE collaboration. The results are obtained from a new measurement using the femtoscopy technique in pp collisions at √s=13TeV and p-Pb collisions at √sNN=5.02 TeV, combined with previously published results from pp collisions at √s=7 TeV. The Λ–Λ scattering parameter space, spanned by the inverse scattering length f0-¹ and the effective range d0, is constrained by comparing the measured Λ–Λ correlation function with calculations obtained within the Lednický model. The data are compatible with hypernuclei results and lattice computations, both predicting a shallow attrac...
This work presents new constraints on the existence and the binding energy of a possible Λ–Λ bound s...
International audienceThis work presents new constraints on the existence and the binding energy of ...
This work presents new constraints on the existence and the binding energy of a possible Λ–Λ bound s...
International audienceThis work presents new constraints on the existence and the binding energy of ...
This work presents new constraints on the existence and the binding energy of a possible Λ–Λ bound s...
International audienceThis work presents new constraints on the existence and the binding energy of ...