论文标题
表面张力驱动的质量保存反应扩散系统中的变厚
Surface-tension-driven coarsening in mass-conserved reaction-diffusion systems
论文作者
论文摘要
化学物种中的质量保护出现在广泛的反应扩散系统(RDS)中,并众所周知,化学浓度的模式使该模式变得粗糙。关于RDS具有质量保护(MCRDS)的最新理论研究报告说,两个状态之间的界面曲率有助于使其变形过程,让人联想到相位分离现象。但是,由于MCRD并未以各种原则为前提,因此对表面张力的描述是否具有操作是未知的。在这项研究中,我们从数值和理论上探索了两个维度和三个维度中MCRD的模式的粗糙过程。我们确定均匀稳态变得稳定,不稳定和亚稳态的参数区域。在不稳定的区域中,图案形成是由通常的图灵不稳定性触发的,而在亚稳定区域中,观察到成核增长型模式的形成。在后期,在两个区域都观察到球形液滴模式,在该区域中,它们遵守了与年轻拉普拉斯定律相似的关系,并在蒸发降压机制之后遵守了较高的液滴模式。这些结果表明,在存在保守的变量的情况下,与表面张力相似的物理量与MCRD相似,该物理量与MCRD相关,这为由化学反应驱动的分子自组装提供了新的见解。
Mass conservation in chemical species appears in a broad class of reaction-diffusion systems (RDs) and is known to bring about coarsening of the pattern in chemical concentration. Recent theoretical studies on RDs with mass conservation (MCRDs) reported that the interfacial curvature between two states contributes to the coarsening process, reminiscent of phase separation phenomena. However, since MCRDs do not presuppose a variational principle, it is largely unknown whether description of surface tension is operative or not. In this study, we numerically and theoretically explore the coarsening process of patterns in MCRDs in two and three dimensions. We identify the parameter regions where the homogeneous steady state becomes stable, unstable, and metastable. In the unstable region, pattern formation is triggered by usual Turing instability, whereas in the metastable region, nucleation-growth-type pattern formation is observed. In the later stage, spherical droplet patterns are observed in both regions, where they obey a relation similar to the Young-Laplace law and coarsen following the evaporation-condensation mechanism. These results demonstrate that in the presence of a conserved variable, a physical quantity similar to surface tension is relevant to MCRDs, which provides new insight into molecular self-assembly driven by chemical reactions.