Department of Physics, Faculty of Mathematics and Physics, University of Ljubljana, Jadranska 19, 1000 Ljubljana, Slovenia.
Department of Physics, Sharif University of Technology, P.O. Box 11155-9161, Tehran 1458889694, Iran.
Nat Commun. 2017 Jan 24;8:14026. doi: 10.1038/ncomms14026.
Fractals are remarkable examples of self-similarity where a structure or dynamic pattern is repeated over multiple spatial or time scales. However, little is known about how fractal stimuli such as fractal surfaces interact with their local environment if it exhibits order. Here we show geometry-induced formation of fractal defect states in Koch nematic colloids, exhibiting fractal self-similarity better than 90% over three orders of magnitude in the length scales, from micrometers to nanometres. We produce polymer Koch-shaped hollow colloidal prisms of three successive fractal iterations by direct laser writing, and characterize their coupling with the nematic by polarization microscopy and numerical modelling. Explicit generation of topological defect pairs is found, with the number of defects following exponential-law dependence and reaching few 100 already at fractal iteration four. This work demonstrates a route for generation of fractal topological defect states in responsive soft matter.
分形是自相似性的显著例子,其中结构或动态模式在多个空间或时间尺度上重复。然而,如果局部环境表现出有序性,那么对于分形刺激(如分形表面)如何与其相互作用,我们知之甚少。在这里,我们展示了科赫向列胶体中几何诱导的分形缺陷态的形成,在从微米到纳米的三个数量级的长度尺度上,表现出超过 90%的分形自相似性。我们通过直接激光写入制作了三个连续分形迭代的聚合物科赫形状的空心胶体棱柱体,并通过偏振显微镜和数值模拟来表征它们与向列相的耦合。发现了拓扑缺陷对的明确产生,缺陷的数量遵循指数律的依赖关系,在分形迭代四次时已经达到了几十个。这项工作展示了在响应性软物质中产生分形拓扑缺陷态的一种途径。