Planckian dissipation bounds emerge as the requirement for classical hydrodynamics to stay valid at low temperature in quantum systems, via blurring from the quantum fluctuation-dissipation theorem.
Planckian bound on the local equilibration time
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A linearized Boltzmann model in five-terminal geometry shows current partition diagnoses ballistic-hydrodynamic-Ohmic crossover and extracts momentum-relaxing and conserving scattering rates.
Any standalone hydrodynamic EFT is acausal and requires UV completions with transient modes to restore causality.
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Planckian dissipation from classical hydrodynamics
Planckian dissipation bounds emerge as the requirement for classical hydrodynamics to stay valid at low temperature in quantum systems, via blurring from the quantum fluctuation-dissipation theorem.