MPS simulations of photodoped Hubbard ladders derive a spin-charge sum rule and demonstrate pump-direction-dependent spectral weight transfer from antiferromagnetic spin response to low-energy charge response, yielding a nonthermal correlated metal.
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A translationally invariant asymmetric-hopping model serves as an effective bulk description for current-driven boundary open systems, with effective temperature rising linearly with current density.
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Dynamical correlations and nonequilibrium sum rules in photodoped Hubbard ladders
MPS simulations of photodoped Hubbard ladders derive a spin-charge sum rule and demonstrate pump-direction-dependent spectral weight transfer from antiferromagnetic spin response to low-energy charge response, yielding a nonthermal correlated metal.
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Construction and Analysis of the Effective Model for the Bulk Steady State under Current in Boundary-Driven Open Systems
A translationally invariant asymmetric-hopping model serves as an effective bulk description for current-driven boundary open systems, with effective temperature rising linearly with current density.