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Dynamics of screening in photo-doped Mott insulators

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arxiv 1507.07953 v1 pith:S2IEZSZM submitted 2015-07-28 cond-mat.str-el

classification cond-mat.str-el
keywords screeningmottdynamicaleffectinsulatorslow-energymodesadds
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We use a nonequilibrium implementation of extended dynamical mean field theory to study the effect of dynamical screening in photo-excited Mott insulators. The insertion of doublons and holes adds low-energy screening modes and leads to a reduction of the Mott gap. The coupling to low-energy bosonic modes further- more opens new relaxation channels and significantly speeds up the thermalization process. We also consider the effect of the energy distribution of the doped carriers on the screening.

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  1. Accelerating a Strong-Coupling Non-Equilibrium Steady-State Impurity Solver using (Quantics) Tensor Trains

    cond-mat.str-el 2026-08 conditional novelty 6.0 of 10

    A quantics tensor-train time-difference formulation with direct retarded convolutions accelerates strong-coupling impurity solvers to third order in nonequilibrium DMFT and EDMFT.

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