Quantization of the classical bistable-potential Mpemba effect shifts anomalous relaxation to ultra-cold temperatures and produces inverse and double-inverse Mpemba effects absent in classical dynamics.
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Single-agent and simultaneous-update contrarian majority dynamics both violate detailed balance and produce nonequilibrium steady states with non-vanishing flux, establishing the model as intrinsically irreversible rather than equilibrium with added noise.
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Quantization of the classical Mpemba effect
Quantization of the classical bistable-potential Mpemba effect shifts anomalous relaxation to ultra-cold temperatures and produces inverse and double-inverse Mpemba effects absent in classical dynamics.
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Contrarian Majority Dynamics: Violation of Detailed Balance and Nonequilibrium Steady States
Single-agent and simultaneous-update contrarian majority dynamics both violate detailed balance and produce nonequilibrium steady states with non-vanishing flux, establishing the model as intrinsically irreversible rather than equilibrium with added noise.