论文标题

在与物种互换的混合物微观模型中形成耗散结构的形成

Formation of Dissipative Structures in Microscopic Models of Mixtures with Species Interconversion

论文作者

Longo, Thomas J., Shumovskyi, Nikolay A., Uralcan, Betül, Buldyrev, Sergey V., Anisimov, Mikhail A., Debenedetti, Pablo G.

论文摘要

物质分为不同阶段的分离本质上是普遍存在的,并且在科学和技术上都很重要。如果涉及的物种,无论是分子还是超分子组件,互连的物种,这种现象可能会大不相同。在存在足够大的外部力量的情况下,可以克服可相互交流物种之间的能量差异(强制互转换),这两个替代物种将相等地存在,并且观察到稳态,限制性相位分为介导的现象。这种微相分离是冷凝物质中耗散结构的最简单实例之一。在这项工作中,我们通过蒙特卡洛和分子动力学模拟了这种中尺度稳态结构的形成,该结构对三种物理上不同的显微镜模型的二元混合物模型进行了模拟,这些模型既表现出平衡(天然)互发又是无等离的强制互连源。我们表明,可以通过分子间力的内部失衡或促进分子互转换的外部能量通量引入该来源,其可能的表现可能包括活细胞的内部非平衡环境或光子的通量。模拟的主要趋势和观察结果是通过相互转换影响的相变的非平衡热力学理论很好地捕获的。我们展示了如何根据扩散,自然相互转换和强制转换之间的相互作用来生成非平衡的双连续微乳液或空间调制状态。

The separation of substances into different phases is ubiquitous in nature and important scientifically and technologically. This phenomenon may become drastically different if the species involved, whether molecules or supramolecular assemblies, interconvert. In the presence of an external force large enough to overcome energetic differences between the interconvertible species (forced interconversion), the two alternative species will be present in equal amounts, and the striking phenomenon of steady-state, restricted phase separation into mesoscales is observed. Such microphase separation is one of the simplest examples of dissipative structures in condensed matter. In this work, we investigate the formation of such mesoscale steady-state structures through Monte Carlo and Molecular Dynamics simulations of three physically distinct microscopic models of binary mixtures that exhibit both equilibrium (natural) interconversion and a nonequilibrium source of forced interconversion. We show that this source can be introduced through an internal imbalance of intermolecular forces or an external flux of energy that promotes molecular interconversion, possible manifestations of which could include the internal nonequilibrium environment of living cells or a flux of photons. The main trends and observations from the simulations are well captured by a non-equilibrium thermodynamic theory of phase transitions affected by interconversion. We show how a nonequilibrium bicontinuous microemulsion or a spatially modulated state may be generated depending on the interplay between diffusion, natural interconversion, and forced interconversion.

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