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非守恒活性混合物中的层次微相分离。

Hierarchical microphase separation in non-conserved active mixtures.

机构信息

DAMTP, Centre for Mathematical Sciences, University of Cambridge, Wilberforce Rd, Cambridge, CB3 0WA, UK.

出版信息

Eur Phys J E Soft Matter. 2021 Sep 27;44(9):119. doi: 10.1140/epje/s10189-021-00113-x.

Abstract

Non-equilibrium phase separating systems with reactions, such as biomolecular condensates and bacteria colonies, can break time-reversal symmetry (TRS) in two distinct ways. Firstly, the conservative and non-conservative sectors of the dynamics can be governed by incompatible free energies; when both sectors are present, this is the leading-order TRS violation, captured in its simplest form by 'Model AB'. Second, the diffusive dynamics can break TRS in its own right. This happens only at higher order in the gradient expansion (but is the leading behaviour without reactions present) and is captured by 'Active Model B+' (AMB+). Each of the two mechanisms can lead to microphase separation, by quite different routes. Here we introduce Model AB+, for which both mechanisms are simultaneously present, and show that for slow reaction rates the system can undergo a new type of hierarchical microphase separation, which we call 'bubbly microphase separation'. In this state, small droplets of one fluid are continuously created and absorbed into large droplets, whose length-scales are controlled by the competing reactive and diffusive dynamics.

摘要

具有反应的非平衡相分离系统,如生物分子凝聚物和细菌菌落,可以通过两种不同的方式打破时间反演对称性 (TRS)。首先,动力学的保守和非保守部分可以由不兼容的自由能来控制;当两个部分都存在时,这是主要的 TRS 破坏,最简单的形式由 "Model AB" 捕获。其次,扩散动力学本身可以打破 TRS。这种情况仅在梯度展开的更高阶次(但在没有反应的情况下是主要行为),并由 "Active Model B+" (AMB+) 捕获。这两种机制中的每一种都可以通过非常不同的途径导致微相分离。在这里,我们引入了 Model AB+,其中同时存在两种机制,并表明对于缓慢的反应速率,系统可以经历一种新的层次微相分离,我们称之为 "泡沫微相分离"。在这种状态下,一种流体的小液滴不断被创造并被吸收到大液滴中,其长度尺度由竞争的反应和扩散动力学控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6068/8476393/d11975d56c5d/10189_2021_113_Fig1_HTML.jpg

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