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表征无序网络超材料的超均匀性。

Characterizing the hyperuniformity of disordered network metamaterials.

作者信息

Maher Charles Emmett, Newhall Katherine A

机构信息

University of North Carolina at Chapel Hill, Department of Mathematics, Chapel Hill, North Carolina, USA.

出版信息

Phys Rev E. 2025 Jun;111(6-2):065420. doi: 10.1103/l5hk-kwyn.

Abstract

Advancements in materials design and manufacturing have allowed for the production of ordered and disordered metamaterials with diverse properties. Hyperuniform two-phase heterogeneous materials, which anomalously suppress density fluctuations on large length scales compared to typical disordered systems, and network materials are two classes of metamaterials that have desirable physical properties. Recent focus has been placed on the design of disordered hyperuniform network metamaterials that inherit the desirable properties of both of these metamaterial classes. In this work, we focus on determining the extent to which network structures derived from the spatial tessellations of hyperuniform point patterns inherit the hyperuniformity of the progenitor point patterns. In particular, we examine the Delaunay, Voronoi, Delaunay-centroidal, and Gabriel tessellations of nonhyperuniform and hyperuniform point patterns in two- and three-dimensional Euclidean space. We use the spectral density to characterize the density fluctuations of two-phase media created by thickening the edges of these tessellations in two dimensions and introduce a variance-based measurement to characterize the network structures directly in two and three dimensions. We find that, while none of the tessellations completely inherit the hyperuniformity of the progenitor point pattern, the degree to which the hyperuniformity is inherited is sensitive to the tessellation scheme and the short- and long-range translational disorder in the point pattern, but not to the choice of beam shape when mapping the networks into two-phase media.

摘要

材料设计与制造方面的进展使得人们能够生产出具有各种特性的有序和无序超材料。与典型的无序系统相比,超均匀两相异质材料能异常抑制大长度尺度上的密度涨落,网络材料是两类具有理想物理特性的超材料。近期的研究重点是设计无序超均匀网络超材料,这类材料继承了这两类超材料的理想特性。在这项工作中,我们专注于确定从超均匀点模式的空间镶嵌导出的网络结构在多大程度上继承了原始点模式的超均匀性。具体而言,我们研究了二维和三维欧几里得空间中非超均匀和超均匀点模式的德劳内三角剖分、沃罗诺伊镶嵌、德劳内质心镶嵌和加布里埃尔镶嵌。我们使用谱密度来表征通过在二维中加厚这些镶嵌的边而创建的两相介质的密度涨落,并引入一种基于方差的测量方法来直接在二维和三维中表征网络结构。我们发现,虽然没有一种镶嵌完全继承原始点模式的超均匀性,但超均匀性的继承程度对镶嵌方案以及点模式中的短程和长程平移无序敏感,而对将网络映射到两相介质时的光束形状选择不敏感。

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