arXiv · 2609.22831
Unbounded Work Extraction and Zero Work Fluctuations in a Super-Carnot Otto Information Engine
Abstract
Generally, the work output of stochastic heat engines is governed by the stochastic trajectory distribution and the energy spectrum. Because the trajectory distribution depends on the thermal reservoir temperatures, the work output is not only constrained by temperature but is also susceptible to thermal fluctuations. To address these limitations, we introduce two continuous Maxwell's demons into a quantum Otto cycle, forming an Otto information engine (OIE). We demonstrate that the work output of the OIE depends solely on the energy level gap, enabling arbitrary work extraction while eliminating work fluctuations, thereby ensuring cycle-to-cycle identical work output. Furthermore, we show that the engine's efficiency can surpass the standard Carnot efficiency even after accounting for the energy cost of demon's memory erasure. Finally, we show that the OIE can deliver superior output power even when the demon's measurement time is taken into account, and the corresponding Monte Carlo simulation has been executed.
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Yang Xiao, Jin Wang. 2026-09-19. Unbounded Work Extraction and Zero Work Fluctuations in a Super-Carnot Otto Information Engine. https://arxiv.org/abs/2609.22831
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