2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/158996We report on the observation of the phase dynamics of interacting one-dimensional ultracold bosonic gases with two internal degrees of freedom. By controlling the non-linear atomic interactions close to a Feshbach resonance we are able to induce a phase diffusive many-body spin dynamics. We monitor this dynamical evolution by Ramsey interferometry, supplemented by a novel, many-body echo technique. We find that the time evolution of the system is well described by a Luttinger liquid initially prepared in a multimode squeezed state. Our approach allows us to probe the non-equilibrium evolution of one-dimensional many-body quantum systems.4 pages, 3 figures Updated version, minor changesOther Condensed MatterQuantum Spin Dynamics of Mode-Squeezed Luttinger Liquids in Two-Component Atomic Gasestext