揭示几何约束长程斥力粒子的内在共形秩序

Zhenwei Yao
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摘要

阐明长程相互作用引导的物质组织是涵盖多个长度尺度的物理系统中的一个基本问题。在此,我们以六边形圆盘模型为基础,分析了长程斥力产生的特征性不均匀性,并揭示了平衡状态下粒子堆积的内在共形秩序。具体而言,我们强调了晶格为匹配不均匀性条件而保留的微妙角度弯曲。我们发现,所揭示的保形秩序受到了周围拓扑缺陷的保护。这些结果推进了我们对长程相互作用系统的理解,并为利用长程力创造短程力无法触及的粒子堆积开辟了前景广阔的可能性,这可能会产生实际影响。
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Intrinsic conformal order revealed in geometrically confined long-range repulsive particles
Elucidating long-range interaction guided organization of matter is a fundamental question in physical systems covering multiple length scales. Here, based on the hexagonal disk model, we analyze the characteristic inhomogeneity created by long-range repulsions, and reveal the intrinsic conformal order in particle packings in equilibrium. Specifically, we highlight the delicate angle-preserved bending of the lattice to match the inhomogeneity condition. The revealed conformal order is found to be protected by the surrounding topological defects. These results advance our understanding on long-range interacting systems, and open the promising possibilities of using long-range forces to create particle packings not accessible by short-range forces, which may have practical consequences.
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