论文标题

可调的缺陷 - 曲面耦合和活动壳的拓扑过渡

Tuneable defect-curvature coupling and topological transitions in active shells

论文作者

Hoffmann, Ludwig A., Carenza, Livio Nicola, Giomi, Luca

论文摘要

最近的实验观察结果表明,拓扑缺陷可以促进发展胚胎的尖锐特征。尽管这些观察结果与二维无源液体晶体中的几何形状与拓扑之间的相互作用建立了知识,但活动的作用大多仍未开发。在本文中,我们专注于由极性或列列活性液晶组成的可变形壳,并证明活性使缺陷和曲率之间的机械耦合比以前想象的要多得多,并且更具参与性和多功能性。使用线性稳定性分析和三维计算流体动力学的组合,我们证明了这种耦合实际上可以调节,具体取决于液体晶体秩序的类型,缺陷的特定结构(即紫色或涡旋)和活性力的性质。在极性系统中,在存在大型活动的情况下,这可以驱动从球形到环形拓扑的壮观过渡。我们的分析加强了缺陷可以用作拓扑形态的观念,并提供了许多可以在体外研究中进行测试的预测,例如在器官的背景下。

Recent experimental observations have suggested that topological defects can facilitate the creation of sharp features in developing embryos. Whereas these observations echo established knowledge about the interplay between geometry and topology in two-dimensional passive liquid crystals, the role of activity has mostly remained unexplored. In this article we focus on deformable shells consisting of either polar or nematic active liquid crystals and demonstrate that activity renders the mechanical coupling between defects and curvature much more involved and versatile than previously thought. Using a combination of linear stability analysis and three-dimensional computational fluid dynamics, we demonstrate that such a coupling can in fact be tuned, depending on the type of liquid crystal order, the specific structure of the defect (i.e. asters or vortices) and the nature of the active forces. In polar systems, this can drive a spectacular transition from spherical to toroidal topology, in the presence of large extensile activity. Our analysis strengthens the idea that defects could serve as topological morphogens and provides a number of predictions that could be tested in in vitro studies, for instance in the context of organoids.

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