A periodic matrix product operator representation of the influence functional yields a numerically exact Floquet propagator for non-Markovian dynamics in strongly damped driven quantum systems.
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A two-photon resonant process in the driven Hubbard-like model of K3C60 produces enhanced pair correlations whose resonance frequency scales downward with cluster size, supporting an electronic origin for the observed 10 THz light-induced response.
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Exact Floquet dynamics of strongly damped driven quantum systems
A periodic matrix product operator representation of the influence functional yields a numerically exact Floquet propagator for non-Markovian dynamics in strongly damped driven quantum systems.
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Microscopic mechanism for resonant light-enhanced pair correlations in K$_3$C$_{60}$
A two-photon resonant process in the driven Hubbard-like model of K3C60 produces enhanced pair correlations whose resonance frequency scales downward with cluster size, supporting an electronic origin for the observed 10 THz light-induced response.