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超均匀性及其推广。

Hyperuniformity and its generalizations.

作者信息

Torquato Salvatore

机构信息

Department of Chemistry, Department of Physics, Princeton Center for Theoretical Science, Program of Applied and Computational Mathematics, Princeton Institute for the Science and Technology of Materials, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Phys Rev E. 2016 Aug;94(2-1):022122. doi: 10.1103/PhysRevE.94.022122. Epub 2016 Aug 15.

Abstract

Disordered many-particle hyperuniform systems are exotic amorphous states of matter that lie between crystal and liquid: They are like perfect crystals in the way they suppress large-scale density fluctuations and yet are like liquids or glasses in that they are statistically isotropic with no Bragg peaks. These exotic states of matter play a vital role in a number of problems across the physical, mathematical as well as biological sciences and, because they are endowed with novel physical properties, have technological importance. Given the fundamental as well as practical importance of disordered hyperuniform systems elucidated thus far, it is natural to explore the generalizations of the hyperuniformity notion and its consequences. In this paper, we substantially broaden the hyperuniformity concept along four different directions. This includes generalizations to treat fluctuations in the interfacial area (one of the Minkowski functionals) in heterogeneous media and surface-area driven evolving microstructures, random scalar fields, divergence-free random vector fields, and statistically anisotropic many-particle systems and two-phase media. In all cases, the relevant mathematical underpinnings are formulated and illustrative calculations are provided. Interfacial-area fluctuations play a major role in characterizing the microstructure of two-phase systems (e.g., fluid-saturated porous media), physical properties that intimately depend on the geometry of the interface, and evolving two-phase microstructures that depend on interfacial energies (e.g., spinodal decomposition). In the instances of random vector fields and statistically anisotropic structures, we show that the standard definition of hyperuniformity must be generalized such that it accounts for the dependence of the relevant spectral functions on the direction in which the origin in Fourier space is approached (nonanalyticities at the origin). Using this analysis, we place some well-known energy spectra from the theory of isotropic turbulence in the context of this generalization of hyperuniformity. Among other results, we show that there exist many-particle ground-state configurations in which directional hyperuniformity imparts exotic anisotropic physical properties (e.g., elastic, optical, and acoustic characteristics) to these states of matter. Such tunability could have technological relevance for manipulating light and sound waves in ways heretofore not thought possible. We show that disordered many-particle systems that respond to external fields (e.g., magnetic and electric fields) are a natural class of materials to look for directional hyperuniformity. The generalizations of hyperuniformity introduced here provide theoreticians and experimentalists new avenues to understand a very broad range of phenomena across a variety of fields through the hyperuniformity "lens."

摘要

无序多粒子超均匀系统是介于晶体和液体之间的奇特非晶态物质

它们在抑制大规模密度涨落方面类似完美晶体,但在统计各向同性且无布拉格峰方面又类似液体或玻璃。这些奇特的物质状态在物理、数学以及生物科学的诸多问题中起着至关重要的作用,并且由于它们具有新颖的物理性质,因而具有技术重要性。鉴于迄今为止已阐明的无序超均匀系统的基础及实际重要性,探索超均匀性概念的推广及其结果是很自然的。在本文中,我们沿着四个不同方向大幅拓宽了超均匀性概念。这包括对非均匀介质中界面面积(闵可夫斯基泛函之一)的涨落以及表面积驱动的演化微观结构、随机标量场、无散随机向量场、统计各向异性多粒子系统和两相介质的推广。在所有情况下,都给出了相关的数学基础并提供了说明性计算。界面面积涨落在表征两相系统(如流体饱和多孔介质)的微观结构、紧密依赖于界面几何形状的物理性质以及依赖于界面能的演化两相微观结构(如旋节分解)方面起着主要作用。在随机向量场和统计各向异性结构的情况下,我们表明超均匀性的标准定义必须推广,以便考虑相关谱函数对傅里叶空间中趋近原点方向的依赖性(原点处的非解析性)。利用这一分析,我们将各向同性湍流理论中的一些著名能谱置于这种超均匀性推广的背景下。在其他结果中,我们表明存在多粒子基态构型,其中方向超均匀性赋予这些物质状态奇特的各向异性物理性质(如弹性、光学和声学特性)。这种可调性可能在以迄今未曾想到的方式操纵光波和声波方面具有技术相关性。我们表明,响应外部场(如磁场和电场)的无序多粒子系统是寻找方向超均匀性的一类自然材料。这里引入的超均匀性推广为理论家和实验家提供了新途径,通过超均匀性“透镜”来理解广泛领域中的各种现象。

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