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Dynamics of Ultracold Quantum Gases in the Dissipative Fermi-Hubbard Model
Published 30 May 2018 in cond-mat.quant-gas and physics.atom-ph | (1805.11853v1)
Abstract: We employ metastable ultracold ${173}$Yb atoms to study dynamics in the 1D dissipative Fermi-Hubbard model experimentally and theoretically, and observe a complete inhibition of two-body losses after initial fast transient dynamics. We attribute the suppression of particle loss to the dynamical generation of a highly entangled Dicke state. For several lattice depths and for two- and six-spin component mixtures we find very similar dynamics, showing that the creation of strongly correlated states is a robust and universal phenomenon. This offers interesting opportunities for precision measurements.
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