论文标题

复杂交互系统中局部不可逆性的出现

Emergence of local irreversibility in complex interacting systems

论文作者

Lynn, Christopher W., Holmes, Caroline M., Bialek, William, Schwab, David J.

论文摘要

生活系统从根本上是不可逆转的,打破了详细的平衡并建立了一系列时间。但是,整个系统的明显箭头是如何来自其多个元素之间的相互作用的呢?我们表明,可以分解了热力学系统的熵产生的箭头的局部证据。首先,它可以分为两个组成部分:一个独立的术语,反映了单个元素的动力学以及由元素之间的依赖项驱动的交互项。从非平衡物理学适应工具,我们将相互作用项进一步分解为元素,三重态和更高阶术语的贡献。我们说明了有关细胞传感和逻辑计算模型的方法,以及视网膜中对视觉输入的响应时的神经活动模式。我们发现,即使视觉输入没有,神经活动也可以定义时间的箭头,并且对这种详细平衡破裂的主要贡献来自对神经元对之间的相互作用。

Living systems are fundamentally irreversible, breaking detailed balance and establishing an arrow of time. But how does the evident arrow of time for a whole system arise from the interactions among its multiple elements? We show that the local evidence for the arrow of time, which is the entropy production for thermodynamic systems, can be decomposed. First, it can be split into two components: an independent term reflecting the dynamics of individual elements and an interaction term driven by the dependencies among elements. Adapting tools from non--equilibrium physics, we further decompose the interaction term into contributions from pairs of elements, triplets, and higher--order terms. We illustrate our methods on models of cellular sensing and logical computations, as well as on patterns of neural activity in the retina as it responds to visual inputs. We find that neural activity can define the arrow of time even when the visual inputs do not, and that the dominant contribution to this breaking of detailed balance comes from interactions among pairs of neurons.

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