Guo Yulong, Liu Xiaopei, Xiong Chi, Xu Xuemiao, Fu Chi-Wing
IEEE Trans Vis Comput Graph. 2018 Aug;24(8):2440-2455. doi: 10.1109/TVCG.2017.2719684. Epub 2017 Jun 26.
Superfluidity is a special state of matter exhibiting macroscopic quantum phenomena and acting like a fluid with zero viscosity. In such a state, superfluid vortices exist as phase singularities of the model equation with unique distributions. This paper presents novel techniques to aid the visual understanding of superfluid vortices based on the state-of-the-art non-linear Klein-Gordon equation, which evolves a complex scalar field, giving rise to special vortex lattice/ring structures with dynamic vortex formation, reconnection, and Kelvin waves, etc. By formulating a numerical model with theoretical physicists in superfluid research, we obtain high-quality superfluid flow data sets without noise-like waves, suitable for vortex visualization. By further exploring superfluid vortex properties, we develop a new vortex identification and visualization method: a novel mechanism with velocity circulation to overcome phase singularity and an orthogonal-plane strategy to avoid ambiguity. Hence, our visualizations can help reveal various superfluid vortex structures and enable domain experts for related visual analysis, such as the steady vortex lattice/ring structures, dynamic vortex string interactions with reconnections and energy radiations, where the famous Kelvin waves and decaying vortex tangle were clearly observed. These visualizations have assisted physicists to verify the superfluid model, and further explore its dynamic behavior more intuitively.
超流性是一种呈现宏观量子现象且表现得像零粘度流体的特殊物质状态。在这种状态下,超流涡旋作为具有独特分布的模型方程的相位奇点而存在。本文基于最先进的非线性克莱因 - 戈登方程提出了新颖的技术,该方程演化一个复标量场,产生具有动态涡旋形成、重连和开尔文波等的特殊涡旋晶格/环结构。通过与超流研究领域的理论物理学家共同制定一个数值模型,我们获得了没有类似噪声波的高质量超流流动数据集,适用于涡旋可视化。通过进一步探索超流涡旋特性,我们开发了一种新的涡旋识别和可视化方法:一种具有速度环流以克服相位奇点的新颖机制和一种避免模糊性的正交平面策略。因此,我们的可视化可以帮助揭示各种超流涡旋结构,并使领域专家能够进行相关的视觉分析,例如稳定的涡旋晶格/环结构、具有重连和能量辐射的动态涡旋弦相互作用,在其中可以清晰地观察到著名的开尔文波和衰减的涡旋缠结。这些可视化帮助物理学家验证了超流模型,并更直观地进一步探索其动态行为。