论文标题

活跃的布朗热发动机

Active Brownian Heat Engines

论文作者

Holubec, Viktor, Steffenoni, Stefano, Falasco, Gianmaria, Kroy, Klaus

论文摘要

无序能量的非平衡形式何时符合热量? \ textColor {blue} {我们在与非平衡能量储层接触的环境中解决了这个问题,该储量违反了热力学的零体定律。为了始终如一地解决后者,因为热浴需要在时间依赖的有效温度下具有平衡浴的精确映射到等效循环。我们确定了最通用的设置,可以从中确定并彻底讨论一个可分析的,实验相关的方案}:限制在\ textColor {blue} {blue} {定期调制的和谐电位中的布朗粒子,并偶联,并耦合到一些可变性活性的非平衡浴中。我们推断出其热力学性能的正式限制,包括最大效率,最大功率效率以及固定功率下的最大效率。他们可以指导新的微手机的设计,并阐明这些可以超过被动式浴缸设计的程度,这是最近实验实现的一个辩论问题。为了说明实用的准静态和有限速率方案的一般原理,我们进一步分析了基于范式的活性布朗粒子(ABP)模型对这种活动热发动机的特定实现。这揭示了明确计算的动力学有效温度的一些非直觉特征,说明了有效平衡映射的各种概念和实际局限性,并阐明了各种粗粒度耗散测量的操作相关性。

When do non-equilibrium forms of disordered energy qualify as heat? \textcolor{blue}{We address this question in the context of cyclically operating heat engines in contact with a non-equilibrium energy reservoir that defies the zeroth law of thermodynamics. To consistently address the latter as a heat bath requires the existence of a precise mapping to an equivalent cycle with an equilibrium bath at a time-dependent effective temperature. We identify the most general setup for which this can generically be ascertained and thoroughly discuss an analytically tractable, experimentally relevant scenario}: a Brownian particle confined in a \textcolor{blue}{periodically} modulated harmonic potential and coupled to some non-equilibrium bath of variable activity. We deduce formal limitations for its thermodynamic performance, including maximum efficiency, efficiency at maximum power, and maximum efficiency at fixed power. They can guide the design of new micro-machines and clarify how much these can outperform passive-bath designs, which has been a debated issue for recent experimental realizations. To illustrate the general principles for practical quasi-static and finite-rate protocols, we further analyze a specific realization of such an active heat engine based on the paradigmatic Active Brownian Particle (ABP) model. This reveals some non-intuitive features of the explicitly computed dynamical effective temperature, illustrates various conceptual and practical limitations of the effective-equilibrium mapping, and clarifies the operational relevance of various coarse-grained measures of dissipation.

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