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Spontaneous fine-tuning to environment in many-species chemical reaction networks

机译:在多种化学反应网络中自发地对环境进行微调

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摘要

A chemical mixture that continually absorbs work from its environment may exhibit steady-state chemical concentrations that deviate from their equilibrium values. Such behavior is particularly interesting in a scenario where the environmental work sources are relatively difficult to access, so that only the proper orchestration of many distinct catalytic actors can power the dissipative flux required to maintain a stable, far-from-equilibrium steady state. In this article, we study the dynamics of an in silico chemical network with random connectivity in an environment that makes strong thermodynamic forcing available only to rare combinations of chemical concentrations. We find that the long-time dynamics of such systems are biased toward states that exhibit a fine-tuned extremization of environmental forcing.
机译:不断从环境中吸收功的化学混合物可能会显示出稳态化学浓度,该浓度偏离其平衡值。在环境工作源相对难以访问的情况下,这种行为特别有趣,因此只有许多不同的催化行为体的适当协调才能为维持稳定的,远离平衡的稳态所需的耗散通量提供动力。在本文中,我们研究了在环境中具有随机连接性的计算机化学网络的动力学,该环境使得强热力学强迫仅适用于稀少的化学浓度组合。我们发现,此类系统的长期动态偏向于表现出对环境强迫进行微调的极端状态。

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