论文标题

皱纹模式的中尺度结构和缺陷增殖的液晶相

Mesoscale structure of wrinkle patterns and defect-proliferated liquid crystalline phases

论文作者

Tovkach, Oleh, Chen, Junbo, Ripp, Monica M., Zhang, Teng, Paulsen, Joseph D., Davidovitch, Benny

论文摘要

薄固体通常会产生弹性不稳定性,并随后复杂,多尺度变形模式。揭示了这种空间复杂性的组织原理,这对我们对植物叶和动物上皮中形态发生过程的理解的理解产生了影响,甚至可能是人指纹的形成。我们阐明了这种形态复杂性的主要来源 - 均匀间隔皱纹的弹性最受欢迎的“微结构”与通过皱纹导演赋予的“宏观结构”之间的不相容性,并由限制力量决定。我们的理论源于经受径向拉伸的浮板的实验和模拟。通过分析严重的径向皱纹的模式,我们发现了两个截然不同的形态:无缺陷模式,具有固定数量的皱纹和不均匀的间距,以及由缺陷富的缓冲区隔开的均匀间隔皱纹的模式。我们展示了这些形态类型是如何反映了金茨堡 - 兰道功能的独特最小值 - 弹性能的粗粒元素版本,它惩罚了非均匀的皱纹间距和振幅,以及其实际导演偏离被限制施加的轴的偏差。我们的结果将皱纹模式作为液晶的有效描述(H。Aharoni等人,Nat。Commun。8:15809,2017),我们强调了几何形状 - 能量相互作用之间的引人入胜的类比,这是构成缺陷的增殖的,这是在机械平衡和热疗法阶段和超级晶体中的机械平衡中的缺陷层的增殖。

Thin solids often develop elastic instabilities and subsequently complex, multiscale deformation patterns. Revealing the organizing principles of this spatial complexity has ramifications for our understanding of morphogenetic processes in plant leaves and animal epithelia, and perhaps even the formation of human fingerprints. We elucidate a primary source of this morphological complexity - an incompatibility between an elastically-favored "micro-structure" of uniformly spaced wrinkles and a "macro-structure" imparted through the wrinkle director and dictated by confinement forces. Our theory is borne out of experiments and simulations of floating sheets subjected to radial stretching. By analyzing patterns of grossly radial wrinkles we find two sharply distinct morphologies: defect-free patterns with a fixed number of wrinkles and non-uniform spacing, and patterns of uniformly spaced wrinkles separated by defect-rich buffer zones. We show how these morphological types reflect distinct minima of a Ginzburg-Landau functional - a coarse-grained version of the elastic energy, which penalizes nonuniform wrinkle spacing and amplitude, as well as deviations of their actual director from the axis imposed by confinement. Our results extend the effective description of wrinkle patterns as liquid crystals (H. Aharoni et al., Nat. Commun. 8:15809, 2017), and we highlight a fascinating analogy between the geometry-energy interplay that underlies the proliferation of defects in the mechanical equilibrium of confined sheets and in thermodynamic phases of superconductors and chiral liquid crystals.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源