XOR-game winning probabilities fix the mutual information and thus the reversible Szilard work extractable from game-induced side information, yielding local, quantum and nonsignalling thermodynamic ceilings.
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Incompatible Hamiltonians enable higher average work extraction across multiple preparations than any classical commuting device, despite per-process free-energy bounds.
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Thermodynamic Value of XOR-Game-Induced Side Information in a Szilard Engine
XOR-game winning probabilities fix the mutual information and thus the reversible Szilard work extractable from game-induced side information, yielding local, quantum and nonsignalling thermodynamic ceilings.
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Quantum work beyond classical (commuting) limits
Incompatible Hamiltonians enable higher average work extraction across multiple preparations than any classical commuting device, despite per-process free-energy bounds.