arXiv:2507.21265cond-mat.softcond-mat.mtrl-sci2025-07

用几何拓扑联合分析软物质动态,揭示多尺度自组织规律

Multiscale geometrical and topological learning in the analysis of soft matter collective dynamics

  • 提出Ψ函数描述拓扑孤子的形状演化与空间组织变化
  • 结合向量场分析,揭示系统对外部刺激的非线性响应机制
  • 适用于生物、化学、物理等复杂系统的图像行为建模

通过分析实验捕获的图像中模式的变化来理解多体系统的行为与演化,是研究各类自组装系统(包括生命与非生命体系)的有力方法。本文以液态晶体斯格明子阵列为例,这类具有分层结构的材料表现出由多尺度过程驱动的复杂时空动力学。联合几何与拓扑数据分析(TDA)可有效捕捉数据在多个尺度下的内在结构。我们引入Ψ-函数,作为稳健的数值拓扑描述符,反映单个拓扑孤子在大小和形状上的时空变化,以及不同空间组织区域的涌现。基于图像生成向量场的几何方法,揭示了系统对外部刺激的非线性物理机制,并为与理论预测对比提供基础。该方法具有高度通用性,可在个体单元及整体层面表征系统行为,实现图像分析结果与真实世界物理、化学或生物过程的关联。

原文摘要 · Abstract (English)

Understanding the behavior and evolution of a dynamical many-body system by analyzing patterns in their experimentally captured images is a promising method relevant for a variety of living and non-living self-assembled systems. The arrays of moving liquid crystal skyrmions studied here are a representative example of hierarchically organized materials that exhibit complex spatiotemporal dynamics driven by multiscale processes. Joint geometric and topological data analysis (TDA) offers a powerful framework for investigating such systems by capturing the underlying structure of the data at multiple scales. In the TDA approach, we introduce the $Ψ$-function, a robust numerical topological descriptor related to both the spatiotemporal changes in the size and shape of individual topological solitons and the emergence of regions with their different spatial organization. The geometric method based on the analysis of vector fields generated from images of skyrmion ensembles offers insights into the nonlinear physical mechanisms of the system's response to external stimuli and provides a basis for comparison with theoretical predictions. The methodology presented here is very general and can provide a characterization of system behavior both at the level of individual pattern-forming agents and as a whole, allowing one to relate the results of image data analysis to processes occurring in a physical, chemical, or biological system in the real world.

拓扑分析软物质多尺度

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