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Techniques for the Visualization of Topological Defect Behavior in Nematic Liquid Crystals

机译:向列型液晶中的拓扑缺陷行为的可视化技术

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We present visualization tools for analyzing molecular simulations of liquid crystal (LC) behavior. The simulation data consists of terabytes of data describing the position and orientation of every molecule in the simulated system over time. Condensed matter physicists study the evolution of topological defects in these data, and our visualization tools focus on that goal. We first convert the discrete simulation data to a sampled version of a continuous second-order tensor field and then use combinations of visualization methods to simultaneously display combinations of contractions of the tensor data, providing an interactive environment for exploring these complicated data. The system, built using AVS, employs colored cutting planes, colored isosurfaces, and colored integral curves to display fields of tensor contractions including Westin's scalar cl, cp , and cs metrics and the principal eigenvector. Our approach has been in active use in the physics lab for over a year. It correctly displays structures already known; it displays the data in a spatially and temporally smoother way than earlier approaches, avoiding confusing grid effects and facilitating the study of multiple time steps; it extends the use of tools developed for visualizing diffusion tensor data, re-interpreting them in the context of molecular simulations; and it has answered long-standing questions regarding the orientation of molecules around defects and the conformational changes of the defects
机译:我们提供可视化工具来分析液晶(LC)行为的分子模拟。模拟数据由数TB的数据组成,描述了随着时间的推移,模​​拟系统中每个分子的位置和方向。凝聚态物理学家研究了这些数据中拓扑缺陷的演变,我们的可视化工具专注于该目标。我们首先将离散的模拟数据转换为连续二阶张量场的采样版本,然后使用可视化方法的组合同时显示张量数据的收缩组合,从而为探索这些复杂数据提供了一个交互环境。该系统使用AVS构建,使用彩色切割平面,彩色等值面和彩色积分曲线来显示张量收缩场,包括威斯汀的标量cl,cp和cs度量以及主要特征向量。我们的方法已在物理实验室中积极使用了一年多。它会正确显示已知的结构。它比以前的方法在空间和时间上更平滑地显示数据,避免了混乱的网格效应并便于研究多个时间步长;它扩展了为可视化扩散张量数据而开发的工具的使用,并在分子模拟的背景下重新解释了它们。它回答了关于缺陷周围的分子取向和缺陷的构象变化的长期存在的问题

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