论文标题

布朗暖气发动机,带有活跃的储层

Brownian heat engine with active reservoirs

论文作者

Lee, Jae Sung, Park, Jong-Min, Park, Hyunggyu

论文摘要

微生物(例如细菌)是活跃的物质,它消耗了化学能并产生其独特的奔跑运动。一群此类微生物提供了一个非平衡的活性环境,其噪声特性与热平衡储层不同。一个重要的区别是有限的持久性时间,与平衡噪声相比,即使有色噪声是有色的。在这里,我们研究了具有主动储层的介质能量收获装置(发动机),利用这种噪声性质。对于简单的线性模型,我们分析表明,发动机效率可以超过常规的Carnot结合,因此释放了发电效率的权衡约束,并且最大功率下的效率可以克服Curzon-Ahlborn效率。我们发现,主动发动机的至高无上的至关重要取决于两个活动储层的时间尺度对称性。

Microorganisms such as bacteria are active matters which consume chemical energy and generate their unique run-and-tumble motion. A swarm of such microorganisms provide a nonequilibrium active environment whose noise characteristics are different from those of thermal equilibrium reservoirs. One important difference is a finite persistence time, which is considerably large compared to that of the equilibrium noise, that is, the active noise is colored. Here, we study a mesoscopic energy-harvesting device (engine) with active reservoirs harnessing this noise nature. For a simple linear model, we analytically show that the engine efficiency can surpass the conventional Carnot bound, thus the power-efficiency tradeoff constraint is released, and the efficiency at the maximum power can overcome the Curzon-Ahlborn efficiency. We find that the supremacy of the active engine critically depends on the time-scale symmetry of two active reservoirs.

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