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A micrometre-sized heat engine operating between bacterial reservoirs

机译:在细菌储层之间运行的微米大小的热量发动机

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摘要

Artificial microscale heat engines are prototypical models to explore the mechanisms of energy transduction in a fluctuation-dominated regime(1,2). The heat engines realized so far on this scale have operated between thermal reservoirs, such that stochastic thermodynamics provides a precise framework for quantifying their performance(3-6). It remains to be seen whether these concepts readily carry over to situations where the reservoirs are out of equilibrium(7), a scenario of particular importance to the functioning of synthetic(8,9) and biological(10) microscale engines and motors. Here, we experimentally realize a micrometre-sized active Stirling engine by periodically cycling a colloidal particle in a time-varying optical potential across bacterial baths characterized by different degrees of activity. We find that the displacement statistics of the trapped particle becomes increasingly non-Gaussian with activity and contributes substantially to the overall power output and the effciency. Remarkably, even for engines with the same energy input, differences in non-Gaussianity of reservoir noise results in distinct performances. At high activities, the effciency of our engines surpasses the equilibrium saturation limit of Stirling effciency, the maximum effciency of a Stirling engine where the ratio of cold to hot reservoir temperatures is vanishingly small. Our experiments provide fundamental insights into the functioning of micromotors and engines operating out of equilibrium.
机译:人工微观热引擎是原型模型,用于探讨波动主导地区的能量转导机制(1,2)。到目前为止这种刻度实现的热风发动机在热储存器之间运行,使得随机热力学提供精确的框架,用于量化它们的性能(3-6)。仍有待观察这些概念是否容易被携带到储存器超出均衡(7)的情况,特别重要的是合成(8,9)和生物(10)微尺度发动机和电动机的功能的特定重要性。这里,我们通过在特征在于不同的活性程度的细菌浴中,通过定期循环循环胶体颗粒来实验通过定期循环胶体颗粒来实现微米尺寸的活性旋转发动机。我们发现捕获粒子的位移统计变为具有活动的越来越多的高斯,并且基本上有助于整体功率输出和效率。值得注意的是,即使对于具有相同能量输入的发动机,储层噪声的非高斯噪声的差异也会导致不同的性能。在高活动中,我们的发动机的效率超过了斯特林效率的平衡饱和极限,斯特林发动机的最大效率,冷到热储存器温度的冷与热藏温度的比率越来越小。我们的实验提供了对经过均衡的微量器和发动机的功能的根本洞察力。

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  • 来源
    《Nature physics》 |2016年第12期|共6页
  • 作者单位

    Indian Inst Sci Dept Phys Bangalore 560012 Karnataka India;

    Indian Inst Sci Mol Biophys Unit Bangalore 560012 Karnataka India;

    Indian Inst Sci Mol Biophys Unit Bangalore 560012 Karnataka India;

    Jawaharlal Nehru Ctr Adv Sci Res Int Ctr Mat Sci Bangalore 560064 Karnataka India;

    Indian Inst Sci Dept Phys Bangalore 560012 Karnataka India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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