From optical to topological data analysis of colloidal and structured liquid crystals

M. Kaczmarek, I. M. Solis, T. Orlova, Karolina Bednarska, P. Lesiak, T. Wolinski, G. D’Alessandro, J. Brodzki
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Abstract

Colloidal liquid crystals offer a route to change physical properties and create micro and nano structures. Optical methods only characterise relatively simple colloidal systems. More complex systems require powerful data analytic methods. We present a new approach using Topological Data Analysis to reveal the structural and morphological features in a nematic liquid crystal doped with gold nanoparticles confined in a thin capillary, including the changes occurring during phase transitions. Our topological framework allows us to identify distinct temperature-induced macroscopic states, obtain a geometric representation of the time-dependent topological states and identify several configurations with different degrees of symmetry and order.
从光学到拓扑数据分析胶体和结构液晶
胶体液晶提供了改变物理性质和创造微纳米结构的途径。光学方法只能表征相对简单的胶体系统。更复杂的系统需要强大的数据分析方法。我们提出了一种新的方法,利用拓扑数据分析来揭示在薄毛细管中掺杂金纳米颗粒的向列相液晶的结构和形态特征,包括相变过程中发生的变化。我们的拓扑框架使我们能够识别不同的温度诱导的宏观状态,获得与时间相关的拓扑状态的几何表示,并识别具有不同程度对称性和顺序的几种构型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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